xaldnf连发程序是什么意思

xal是什么意思_百度知道
xal是什么意思
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ai 拼音“爱”at 在..顶耽侈甘侬仿畴湿川溅.all 全部,一切,完全xal 无性恋
xal是哈萨克族的一个老人与狼决斗的电影。其中xal的意思是老汉,老年男性的意思。。。
无性恋的简称为“xal”和“al”,这三个字母是从无性恋的完整英文单词中选出的。无性恋是指一些不具有性倾向的人,即不对男性或女性任一性别表现出性倾向的一种倾向,不过无性恋是否是一种性倾向到目前为止都还有争议。 对男性和女性都持著一种较冷淡的态度,不会对任何一方产生兴趣,但会因自己的性别或日常经历而对某一性别多出一些好感。无性恋对人难以产生很多好感,亦不多会出现厌恶。日,加拿大布鲁克大学副教授博盖特的研究表明,全球约有7000万人为“无性恋”者。哎……
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出门在外也不愁山东大学晶体材料研究所导师--刘宏简介
姓名 刘宏 性别 男 出生年月 1964-01 学历 博士研究生 学位 博士学位 专业技术职务及聘任时间 教授 [] 行政职务 博导聘任时间
所在学院 晶体材料研究所 所在一级学科名称 材料科学与工程 学科代码 0805 所在二级学科名称 材料物理与化学 学科代码
&博士研究生
专业技术职务及聘任时间
博导聘任时间
&晶体材料研究所
所在一级学科名称
&材料科学与工程
所在二级学科名称
&材料物理与化学
& 【纳米材料】
&中国晶体学会理事
中国硅酸盐学会晶体生长分会副秘书长,中国光学学会材料专业委员会理事
中国硅酸盐学会会员,美国化学会会员
《物理学报》《Chinese&Physics》特约审稿专家
《Advanced&Materials》、《Journal&of&American&Chemical&Society》、《Applied&Physics&Letters》、《Journal&of&physical&Chemistry》、《Langmuir》、《Nanotechnology》、《Diamond&and&Related&Materials》等国际学术期刊特约审稿人
1985年毕业于山东轻工业学院,获工学学士学位;&
1997年毕业于山东大学,获理学硕士学位;&
2001年毕业于山东大学,获工学博士学位&
年在山东轻工业学院材料学科与工程系,历任助教,讲师和副教授;&
2002年起,山东大学晶体材料国家重点实验室任教授;&
2003年起任博士生导师;&
2005年-2006年在美国佐治亚理工学院进行访问研究。&
2012年拟招收硕士研究生2人,博士研究生2人,毕业生将适合从事功能晶体、激光陶瓷材料,生物材料及纳米材料与器件等相关工作。&
1.&&.5&&&&&一种用于骨组织工程的支架材料及其制备方法&
2.&天然高分子-羟基磷灰石二级三维网络结构骨组织工程支架材料及其籽晶诱导制备方法&(2011&已经提交)
3.&&.1&&&&&一种贵重金属/一维二氧化钛纳米结构复合材料及其制备方法&&(已经授权)
4.&&.8&&&&&具有阻尼的晶体旋转提拉装置&&(已经授权)
5.&&.3&&&&&一种用于近化学计量比铌酸锂晶体生长的悬挂坩埚及生长方法&&(已经授权)
6.&&.9&&&&&利用液相化学法制备硫族化合物热电薄膜的方法&(已经授权)&
7.&&.3&&&&&一种含氧金属无机化合物单晶纳米材料的低温碱熔液合成方法&&(已经授权)
8.&&.7&&&&&以多孔陶瓷为载体的纳米银复合抗菌材料及其制备方法&&(已经授权)
9.&&.3&&&&&成分均匀的球状掺杂铌酸锂多晶原料的合成方法&(已经授权)&
10.&&.0&&&&&一种银纳米金属抗菌涂层的制备方法和应用&&(已经授权)
11.&&.9&&&&&磷酸三镓晶体的助熔剂生长法&&(已经授权)
12.&&.6&&&&&一种二氧化钛纳米纸及其制备方法&&
13.&&.8&&&&&部分液相沉淀法制备稀土掺杂的钇铝石榴石纳米粉体的方法&&(已经授权)
14.&&.6&&&&&成分均匀的球状掺杂钽酸锂多晶原料的合成方法&&(已经授权)
15&&&.8&&&&&一种掺钕钇铝石榴石透明激光陶瓷的冷冻成型方法&
16.&&.1&&&&&一种处理铌酸锂或钽酸锂晶片的方法&&(已经授权)
17.&&.3&&&&&用于陶瓷坯体制备的多孔陶瓷负压注浆成型装置及方法&&
18.&&.2&&&&&石墨导电胶在制备检测电极粘结剂中的应用&&
Published&papers:&
1.&In&vitro&Biomimetic&Construction&of&Hydroxyapatite&&Porcine&Acellular&Dermal&Matrix&Composite&Scaffold&for&MC3T3-E1&Preosteoblast&Culture&&&&
Hongshi&Zhao,&Guancong&Wang,&Shunpeng&Hu,&Jingjie&Cui,&Na&Ren,&Hong&Liu*,&Chengbo&Cao,&Jiyang&Wang,&Zhonglin&Wang&&&&&
Tissue&Engineering&Part&A,17(:&765-776In&vitro&Biomimetic&Construction&of&Hydroxyapatite&Porcine&Acellular&Dermal&Matrix&Composite&.pdf
2.&In&Vitro&Assessment&of&the&Differentiation&Potential&of&Bone&Marrow-Derived&Mesenchymal&Stem&Cells&on&Genipin-Chitosan&Conjugation&Scaffold&with&Surface&Hydroxyapatite&Nanostructure&for&Bone&Tissue&Engineering
Guancong&Wang,&Lin&Zheng,&Hongshi&Zhao,&Junying&Miao,&Chunhui&Sun,&Na&Ren,
Jiyang&Wang,&Hong&Liu*,&and&Xutang&Tao
Tissue&Engineering&Part&A.,&-10):&&(Cover&art)2011&May&Cover&story.doc9-10Tissue&engineering&Guancong&proof.pdf
3.&Pt&support&of&multidimensional&active&sites&and&radial&channels&formed&by&SnO2&flower-like&crystals&for&methanol&and&ethanol&oxidation
Hulin&Z&Chenguo&Hu;&Xiaoshan&He;&Hong&L&Guojun&Du;&Yan&Zhang
Journal&of&Power&Sources&196&(99-505Pt&support&of&multidimensional&active&sites&and&radial&channels&formed&by&SnO2&.pdf
4.&Formation&mechanism&of&black&LiTaO3&single&crystals&through&chemical&reduction
Tao&Yan,&Feifei&Zheng,&Yonggui&Yu,&Shubin&Qin,&Hong&Liu*,&Jiyang&Wang,&Dehong&Yu
Journal&of&Applied&Crystallography&&&&44&(2011):&158-162&&&J&Appl&Crsta.&(-162.pdf
5.&CdS&thin&films&on&LiNbO3&(104)&and&silicon&(111)&substrates&prepared&through&an&atom&substitution&method
Haiming&Qin,&Yue&Zhao,&Hong&Liu*,&Zheng&Gao,&Jiyang&Wang,&Duo&Liu,&Yuanhua&Sang,&Bin&Yao,&&
Robert&I.&Boughton
Journal&of&Solid&State&Chemistry,&184(5-728&JournalofSolidStateChemistry184(&海明.pdf
6.&Nano-p-n&junctions&on&surface-coarsened&TiO2&nanobelts&with&enhanced&photocatalytic&activity
Jianjian&Lin,&Jianxing&Shen,&Ruijun&Wang,&Jingjie&Cui,&Weijia&Zhou,&Peiguang&Hu,&Duo&Liu,&Hong&Liu*,&Jiyang&ang,&Robert&I.Boughton,&Yuanzheng&Yue
Journal&of&Materials&Chemistry,&),&&&Nano-p&n&junctions&on&surface-coarsened&TiO2&nanobelts&with&enhanced.pdf&
7.&Formation&and&calcination&temperature-dependent&sintering&activity&of&YAG&precursor&synthesized&via&reverse&titration&method
Yuanhua&Sang,&Hong&Liu*,&Xudong&Sun,&Xiaolin&Zhang,&Haiming&Qin,&Yaohui&Lv,&Duo&Liu,&Jiyang&
Wang,&Robert&I.&Boughton&
Journal&of&Alloys&And&Compounds,&509(07-2413&Journal&of&Alloys&and&Compounds&509&(&2413&Yuanhua.pdf
8.&Selective&synthesis&and&fluorescence&of&Pb-5(VO4)(3)OH&nano-&and&micro-crystals
Jing&Xu,&Chenguo&Hu,&Yi&Xi,&Yanxue&Chen,&Hong&Liu,&Buyong&Wan
Physica&E-Low-Dimensional&Systems&&&Nanostructures,&43(8-942&Selective_synthesis_and_fluorescence_of_Pb5_VO4_3OH_nano-_and_micro-crystals[1].pdf
9.&Carbon-nanosphere-supported&Pt&nanoparticles&for&methanol&and&ethanol&electro-oxidation&in&
alkaline&media
Xue&Wang,&Chenguo&Hu,&Yufeng&Xiong,&Hong&Liu,&Guojun&Du,&Xiaoshan&He
Journal&of&Power&Sources,&196(04-1908Journal&of&Power&Sources&196&(&1908&HuChenguo.pdf
10.&High-performance&TiO2&from&Baker's&yeast
Wen&He,&Jingjie&Cui,&Yuanzheng&Yue,&Xudong&Zhang,&Xi&Xia,&Hong&Liu,&Suwen&Liu
Journal&of&Colloid&And&Interface&Science,&354(9-115Journal&of&Colloid&and&Interface&Science&354&(5&Hewen.pdf
11.&Mechanism&of&the&abnormal&thermal&expansion&of&nearly&stoichiometric&LiNbO3
Yao,&S.H.;&Wang,&J.Y.;&Liu,&H*.;&Yan,&T.;&Yu,&D.H.;&Chen,&Y.F.&
Journal&of&Crystal&Growth,&318(1-3&
12.Construction&of&A&Fluorescent&Nanostructured&Chitosan-Hydroxyapatite&Scaffold&by&Nanocrystallon&Induced&Biomimetic&Mineralization&and&Its&Cell&Biocompatibility
Guancong&Wang,&Lin&Zheng,&Hongshi&Zhao,&Junying&Miao,&Chunhui&Sun,&Hong&Liu*,&Zhen&Huang,&Xiaoqiang&Yu,&Jiyang&Wang,&and&Xutang&Tao
ACS&Appl.&Mater.&Interfaces,&),&pp&&ACS&Appl&Mater&Interface&Guancong.pdf&
13.&Electrocatalytic&oxidation&of&nucleobases&by&TiO2&nanobelts
Jingjie&Cui,&Dehui&Sun,&Weijia&Zhou,&Hong&Liu,&Peiguang&Hu,&Na&Ren,&Haiming&Qin,&Zhen&Huang,&Jianjian&Lin&and&Houyi&Ma&
Phys.&Chem.&Chem.&Phys.,&32&9237PCCP&cuijingjie.pdf&
14.&Control&synthesis&of&rutile&TiO2&microspheres,&nanoflowers,&nanotrees&and&nanobelts&via&acid-hydrothermal&method&and&their&optical&propertie
Weijia&Zhou,&Xiaoyan&Liu,&Jingjie&Cui,&Duo&Liu,&Jing&Li,&Huaidong&Jiang,&Jiyang&Wang&and&Hong&Liu&
CrystEngComm,&2011,&Advance&Article&DOI:&10.186E&CrystEngComm,&2011.pdf&
15.&Nanoheterostructures&on&TiO2&nanobelts&achieved&by&acid&hydrothermal&method&with&enhanced&photocatalytic&and&gas&sensitive&performance
Weijia&Zhou,&Guojun&Du,&Peiguang&Hu,&Guohong&Li,&Dongzhou&Wang,&Hong&Liu,&Jiyang&Wang,&Robert&I.&Boughton,&Duo&Liu&and&Huaidong&Jiang
J.&Mater.&Chem.,&37&(Hot&article)hot&article.doc&JMC&.pdf&
16.&ZnS&nanoparticles&self-ssembled&from&ultrafine&particles&and&their&highly&photocatalytic&activity&
Xiaoyan&Li,&Chenguo&Hu,&Hong&Liu,&Jing&Xu,&Buyong&Wan,&Xue&Wang&
Physica&E&43&(&1075&ZnS_nanoparticles_self-assembled_from_ultrafine_particles_and_their_highly_photocatalytic_activity[1].pdf
Enhancement&of&selective&determination&of&the&perfect&match&and&mismatch&of
single&nucleobases&with&a&biosensing&electrode&based&on&surface-coarsened
anatase&TiO2&nanobelts
1&One-dimensional&single-crystalline&Ti&O&based&nanostructures:&properties,&synthesis,&modifications&and&applications
Weijia&Zhou,&Hong&Liu,*&Robert&I.&Boughton,*&Guojun&Du,&Jianjian&Lin,&Jiyang&Wang&and&Duo&Liu
J.&Mater.&Chem.&20&(&6008.&(Feature&Article)&
2.&Glassy&State&Lead&Tellurite&Nanobelts:&Synthesis&and&Properties&
Buyong&Wan,&Chenguo&Hu,&Hong&Liu,&Xueyan&Chen,&Yi&Xi,&Xiaoshan&He&
Nanoscale&Research&Letters&&5,&(&1350&
3&Interface&dominated&high&photocatalytic&properties&of&electrostatic&self&assembled&Ag2O/TiO2&heterostructure&Weijia&Zhou,&Hong&Liu*,&Jiyang&Wang*,&Duo&Liu,&Guojun&Du,&Shujuan&Han,&Jianjian&Lin&and&Ruijun&Wang&Phys.&Chem.&Chem.&Phys.&12&(-15123&
4&Twinning&structures&in&near-stoichiometric&lithium&niobate&single&crystals&
Shuhua&Yao,&Xiaobo&Hu,&Tao&Yan,&Hong&Liu,*&Jiyang&Wang,*&Xiaoyong&Qinand&Yanfeng&Chen
J.&Appl.&Cryst.&43&(9&
5&Synthesis&and&characterization&of&KCu3S2&microstructures&through&a&composite-hydroxide&mediated&method&
Linyong&Huang,&Jing&Liu,&Zhiyuan&Zuo,&Hong&Liu*,&Duo&Liu,&Jiyang&Wang&and&Robert&I.&Boughton&
Journal&of&Alloys&and&Compounds&507&(2010),&429-432&
6&Yttrium&aluminum&garnet&nanoparticles&synthesized&by&nitrate&decomposition&and&their&low&temperature&densification&behavior&
Yuanhua&Sang,&Hong&Liu*,&Yaohui&Lv,&Jiyang&Wang*,&Ting&Chen,&Duo&Liu,&Xiaolin&Zhang,&Haiming&Qin,&Xiaoning&Wang&and&Robert&I.&Boughton&
Journal&of&Alloys&and&Compounds&490&(2010),&459-462&
7&Synthesis&of&CuO&nanostructures&and&their&application&for&nonenzymatic&glucose&sensing&
Xue&Wang,&Chenguo&Hu*,&Hong&Liu,&Guojun&Du,&Xiaoshan&He,&Yi&Xi&
Sensors&and&Actuators&B&144&(5&
8&Influence&of&chemical&reduction&on&optical&and&electrical&properties&of&LiTaO3&crystal&
Tao&Yan,&Hong&Liu&,&Jiyang&Wang&,&Feifei&Zheng,&Shuhua&Yao,&Zongren&Xia,&Jianbo&Wu,&Robert&I.&Boughton&
Journal&of&Alloys&and&Compounds&497&(5&
9&Chemical&assembly&of&silver&nanoparticles&on&stainless&steel&for&antimicrobial&applications
Limei&Chen,&Lin&Zheng,&Yaohui&Lv,&Hong&Liu*,&Guancong&Wang,&Na&Ren,&Duo&Liu*,&Jiyang&Wang,&Robert&I.&Boughton&
Surface&&&Coatings&Technology&204&(&3875&
10&Bismuth&Onion&Thin&Film&in&situ&Grown&on&Silicon&Wafer&Synthesized&through&a&Hydrothermal&Approach&
Yue&Zhao,&Hong&Liu,*&Jin&Liu,&Chengguo&Hu,&Jiyang&Wang,&
Applied&Surface&Science&257&(8.&
11&Electrokinetic&properties&of&Nd:YAG&nanopowder&and&a&high&concentration&slurry&with&ammonium&poly(acrylic&acid)&as&dispersant&
Yao-Hui&Lv,&Hong&Liu*,&Yuan-Hua&Sang,&Shu-Jiang&Liu,&Ting&Chen,&Hai-Ming&Qin,&Ji-Yang&Wang
J&Mater&Sci&45&(2010),&706&712&
12&Enhancement&of&Ethanol&Vapor&Sensing&of&TiO2&Nanobelts&by&Surface&Engineering
Peiguang&Hu,&Guojun&Du,&Weijia&Zhou,&Jingjie&Cui,&Jianjian&Lin,&Hong&Liu*,&Duo&Liu,&Jiyang&Wang,&and&Shaowei&Chen&&
ACS&Appl.&Mater.&Inter.&),&&
13&Ag2O/TiO2&Nanobelts&Heterostructure&with&Enhanced&Ultraviolet&and&Visible&Photocatalytic&Activity&
Weijia&Zhou,&Hong&Liu,*&Jiyang&Wang,&Duo&Liu,&Guojun&Du,&and&Jingjie&Cui&
ACS&Appl.&Mater.&Inter.&),&&
14&Building&Ag&nanoparticle&3D&catalyst&via&Na2Ti3O7&nanowires&for&the&detection&of&hydrogen&peroxide&
Xiaoshan&He,&Chenguo&Hu,&Hong&Liu,&Guojun&Du,&Yi&Xi,&Youfei&Jiang&
Sensors&and&Actuators&B&&144&(4&
15&Fabrication&of&3D&Pt&catalysts&via&support&of&Na2Ti3O7&nanowires&for&methanol&and&ethanol&electrooxidation&
Xiaoshan&He,&Chenguo&Hu,&Hong&Liu&
Catalysis&Communications&12&(4&
16&Mechanistic&Insight&into&the&Function&of&the&C-terminal&PKD&Domain&of&the&Collagenolytic&Serine&Protease&Deseasin&MCP-01&from&Deep&Sea&Pseudoalteromonas&sp.&SM9913:&BINDING&OF&THE&PKD&DOMAIN&TO&COLLAGEN&RESULTS&IN&COLLAGEN&SWELLING&BUT&DOES&NOT&UNWIND&THE&COLLAGEN&TRIPLE&HELIX&
Wang&YK,&Zhao&GY,&Li&Y,&Chen&XL,&Xie&BB,&Su&HN,&Lv&YH,&He&HL,&Liu&H,&Hu&J,&Zhou&BC,&Zhang&YZ&
J.&Biol.&Chem.&285&(-142&
17&ZnO&Pyramidal&Arrays:&Novel&Functionality&in&Antireflection&
Yongshu&Tian,&Chenguo&Hu*,&Yufeng&Xiong,&Buyong&Wan,&Chuanhui&Xia,&Xiaoshan&He,
and&Hong&Liu&
J.&Phys.&Chem.&C&114,&(-10269&
18&Carbon-nanosphere-supported&Pt&nanoparticles&for&methanol&and&ethanol&electro-oxidation&in&alkaline&media&
Xue&Wang,&Chenguo&Hu*,&Yufeng&Xiong,&Hong&Liu,&Guojun&Du,&Xiaoshan&He&
Journal&of&Power&Sources&196&(&1908&
19&Raspite&PbWO4&nanobelts:&synthesis&and&properties&
Chunhua&Zheng&Chenguo&Hu,*&Xueyan&Chen,&Hong&Liu,&Yufeng&Xiong,&Jing&Xu,&Buyong&Wan&and&Linyong&Huang
CrystEngComm&12,&(2010),&&
20.&Electrodeposition&of&submicron/nanoscale&Cu2O/Cu&junctions&in&an&ultrathin&CuSO4&solution&layer
Guangwei&Yu,&Xiaobo&Hu,&Duo&Liu,&Daliang&Sun,&Jing&Li,&Huaijin&Zhang,&Hong&Liu,&Jiyang&Wang
Journal&of&Electroanalytical&Chemistry&638&(0&
21.&UV-Irradiation-Enhanced&Ferromagnetism&in&BaTiO3
&Shubin&Qin,&Duo&Liu*,&Zhiyuan&Zuo,&Yuanhua&Sang,&Xiaolin&Zhang,&Feifei&Zheng,&Hong&Liu&and&Xian-Gang&Xu
J.Phys.Chem.Lett&&1(&
22.&Continuous-wave&tri-wavelength&operation&at&&and&1338&nm&of&LD&end-pumped&Nd:YAG&ceramic&laser&
Lijuan&Chen,&Zhengping&Wang,&Hong&Liu,&Shidong&Zhuang,&Haohai&Yu,&Lei&Guo,&Ruijun&Lan,&Jiyang&Wang,&and&Xinguang&Xu
Opt.Express&&18(-&22173&
23.&1319&nm&and&1338&nm&dual-wavelength&operation&of&laser-diode&end-pumped&Nd:YAG&ceramic&laser&
Lei&Guo,&Ruijun&Lan,&Hong&Liu,&Haohai&Yu,&Huaijin&Zhang,&Jiyang&Wang,&Dawei&Hu,&Shidong&Zhuang,&Lijuan&Chen,&Yongguang&Zhao,&Xinguang&Xu,&and&Zhengping&Wang&
Opt.Express&&18(8)&pp.&&
24.&Enhancement&of&passively&Q-switched&performance&at&1.34&mu&m&with&a&class&of&Nd:GdxY1-xVO4&crystals&
Li&X&,&Li&GQ&,&Zhao&SZ&,&Xu&C&,&Li&YF&,&Liu&H&*,&Zhang&HJ&
OPTICS&EXPRESS&18&(-21556
25.&(111)&Twinned&BaTiO3&microcrystallites&
Qin&SB&,&Liu&D,&Zheng&FF&,&Zuo&ZY&,&Liu&H&,&Xu&XG&
CRYSTENGCOMM&&12&(07
1.&Composite-hydroxide-mediated&approach&as&a&general&methodology&for&synthesizing&nanostructures
Chenguo&Hu,&Yi&Xi,&Hong&Liu&&and&Zhong&Lin&Wang
J.&Mater.&Chem.,&8&&&868
2.&Controlled&synthesis&of&hydrogen&titanate-polyaniline&composite&nanowires&and&their&resistance-temperature&characteristics,
Ligang&Gai,&Guojun&Du,&Zhiyuan&Zuo,&Yanmin&Wang,&Duo&Liu&and&Hong&Liu&J.&Phys.&Chem.&C,&&(18),&pp&&&
3.&Synthesis&and&characterization&of&Cu2Se&prepared&by&hydrothermal&co-reduction
Journal&of&Alloys&and&Compounds,&Volume&484,&Issues&1-2,&18&September&2009,&Pages&674-676
Kegao&Liu,&Hong&Liu,&Jiyang&Wang,&Lei&Shi
4.&Synthesis&and&characterization&of&SnSe2&hexagonal&nanoflakes
Kegao&Liu,&Hong&Liu&*,&Jiyang&Wang,&Liming&Feng&
Materials&Letters&63&(4&
5.&Hydrothermal&and&wet-chemical&synthesis&of&pure&LiTaO3&powders&by&using&commercial&tantalum&hydroxide&as&starting&material&
Feifei&Zheng,&Hong&Liu,&&Duo&Liu&,&Shuhua&Yao,&Tao&Yan&and&Jiyang&Wang
Journal&of&Alloys&and&Compounds&2009&Volume&477,&Issues&1-2,&27&May&2009,&Pages&688-691&
6.&A&Photocatalytic&Reduction&Method&for&the&Preparation&of&TiO2&Nanobelt&Supported&Noble&Metals&(Ag,&Au),&
Yanmin&Wang,&Guojun&Du,&Hong&Liu*,&Duo&Liu,&Shubin&Qin,&Jiyang&Wang,&Xutang&Tao,&Minhua&Jiang1,&and&Zhong&Lin&Wang
J&Nanosci&Nanotechnol.&):2119-23.&
7.&Silver&nanoparticle-decorated&porous&ceramic&composite&for&water&treatment
Yaohui&Lv,&Hong&Liu*&,&ZhenWang,&Shujiang&Liu,&Lujiang&Hao,&Yuanhua&Sang,&Duo&Liu,&JiyangWang,&
&R.I.&Boughton&
Journal&of&Membrane&Science,&Volume&331,&Issues&1-2,&1&April&2009,&Pages&50-56&
8.&A&rapid-response&humidity&sensor&based&on&BaNbO3&nanocrystals
Michao&Zhang,&Chenguo&Hu,&Hong&Liu,&Yufeng&Xiong,&Zuwei&Zhang
Sensors&and&Actuators&B&136&(2&(IF:&2.934)
9.&Morphology&Changes&of&Nanocrystals&Induced&by&a&Small&Amount&of&Water&in&the&CHM&Approach
C.&G.&Hu,&J.&Miao,&H.&Liu,&Z.&Q.&Liu,&and&Y.&F.&Xiong,&
J.&Nanosci.&Nanotechnol.&Volume&9,&Number&2,&February&2009&,&(4)&
10.&Growth&of&PbTe&nanorods&controlled&by&polymerized&tellurium&anions&and&metal(II)&amides&via&composite-hydroxide-mediated&approach
Buyong&Wan,&Chenguo&Hu,&Hong&Liu&,&Yufeng&Xiong&,&Feiyun&Li&,&Yi&Xi&,&Xiaoshan&He&,
Materials&Research&Bulletin&44&(&1849
1.&Nanostructured&sheets&of&Ti-O&nanobelts&for&gas&sensing&and&antibacterial&applications&
Wang&YM,&Du&GJ,&Liu&H*,&et&al.
ADVANCED&FUNCTIONAL&MATERIALS&18(7):&:&APR&11&2008&
2.&Size-Dependent&Selective&Etching&Mechanism:&Cavity&Formation&on&Barium&Titanate&Nanocubes&
Qin&SB,&Liu&D,&Liu&H,&et&al.
JOURNAL&OF&PHYSICAL&CHEMISTRY&C,&112&(44):&:&NOV&6&2008&
3.&Flux&growth&and&characterizations&of&Ga3PO7&single&crystals&
Guogang&Xu,&Jing&Li,&Jiyang&Wang*,&Hongyang&Zhao&and&Hong&Liu
CRYSTAL&GROWTH&&&DESIGN&&&8&(10):&:&OCT&2008
4.&Synthesis,&characterization,&and&electrical&properties&of&SiCN&nanowires&
Kefeng&Cai,&Linyong&Huang,&Aixia&Zhang&,&Junlin&Yin&and&Hong&Liu
CRYSTAL&GROWTH&&&DESIGN&,&8&(&7&):&:&JUL&2008&
5.&Ultra&Long&SiCN&Nanowires&and&SiCN/SiO2&Nanocables:&Synthesis,&Characterization,&and&Electrical&Property&
Cai,&K.F.;&Huang,&L.Y.;&Zhang,&A.X.;&Yin,&J.L.;&Liu,&H.
JOURNAL&OF&NANOSCIENCE&AND&NANOTECHNOLOGY,&8(12):&):&Dec.&2008
6.&&Antibiotic&glass&slide&coated&with&silver&nanoparticles&and&its&antimicrobial&capabilities&
Lv&YH,&Liu&H*,&Wang&Z,&et&al.
POLYMERS&FOR&ADVANCED&TECHNOLOGIES,&19(11):&:&NOV&2008&&
7.&White-beam&synchrotron&topographic&characterization&of&antiparallel&180&degrees&domains&in&MgO&doped&near-stoichiometric&LiNbO3&
Gao&L,&Wang&JY,&Liu&H*,&et&al.
PHYSICA&STATUS&SOLIDI&A-APPLICATIONS&AND&MATERIALS&SCIENCE,&
205&(5):&:&MAY&2008&
8.&&Growth,&optical&and&thermal&properties&of&near-stoichiometric&LiNbO3&single&crystal&
Yao&SH,&Wang&JY,&Liu&H,&et&al.
JOURNAL&OF&ALLOYS&AND&COMPOUNDS&,&455&(1-2&):&501-505:&MAY&8&2008&
9.&&BaTiO3&nanocubes:&Size-selective&formation&and&structure&analysis&
Miao&J,&Hu&CG,&Liu&H,&et&al.
MATERIALS&LETTERS,&62&(&2&):&235-238:&JAN&31&2008&
10.&Hu&CG,&Liu&H,&Wang&ZL,&
Synthesis&of&Oxide&Nanostructures&(Book&Chapter)
BioNanoFluidic&MEMS,&Springer&US&2008&&Page,&11-36,
SpringerLink&Date&2007Nov15
1.&La(OH)(3)&and&La2O3&nanobelts&-&Synthesis&and&physical&properties&
Hu&CG,&Liu&H,&Dong&WT,&et&al.
ADVANCED&MATERIALS,&19(&3):&470-+:&FEB&5&2007&(IF:&8.191)
2.&Optical&waveguide&in&stoichiometric&lithium&niobate&formed&by&500&keV&proton&implantation&
Wang,&L&Wang,&Ke-M&Chen,&F&Wang,&Xue-L&Wang,&Liang-L&Liu,&H&Lu,&Qing-Ming
OPTICS&EXPRESS,&15(25):&:&DEC&10&2007&(IF:&3.709)
3.&&The&formation&of&patterns&of&electrochemical&deposits&in&an&ultra-thin&layer&of&CuSO4&solution&
Yu&GW,&Wang&JY,&Liu&D,&Liu&H
JOURNAL&OF&ELECTROANALYTICAL&CHEMISTRY,&611(1-2):&169-174&:&DEC&15&2007&(IF:2.58)
4.&Synthesis&of&Nd3+&doped&nano-crystalline&yttrium&aluminum&garnet&(YAG)&powders&leading&to&transparent&ceramic&
Li&X&(Li,&Xia),&Li&Q&(Li,&Qiang),&Wang&JY&(Wang,&Jiyang),&Yang&SL&(Yang,&Shunliang),&Liu&H&(Liu,&Hong)
OPTICAL&MATERIALS,&29(5):&528-531:&JAN&2007&(IF:&1.519)
5.&&Synthesis&of&YAG&by&the&solvothermal&method&
Zhang&XD&(Zhang&Xudong),&Xu&GG&(Xu&Guogang),&Wang&JY&(Wang&Jiyang),&Liu&H&(Liu&Hong)
RARE&METAL&MATERIALS&AND&ENGINEERING,&36(128-130):&AUG&2007&(IF:&0.286)
6.&Growth&and&characterization&of&near&stoichiometric&LiNbO3&single&crystal&
Yao&SH,&Hu&XB,&Wang&JY,&Liu&H&(corresponding&author)&et&al.
CRYSTAL&RESEARCH&AND&TECHNOLOGY,&42(2):&114-118:&FEB&2007&(IF:&0.768)
1.&Composite-hydroxide-mediated&approach&for&the&synthesis&of&nanostructures&of&complex&functional-oxides&
Liu&H,&Hu&CG,&Wang&ZL
NANO&LETTERS,&6(&7):&:&JUL&12&2006&(IF:&9.847)
2.&Size-manipulable&synthesis&of&single-crystalline&BaMnO3&and&BaTi1/2Mn1/2O3&nanorods/nanowires&
Hu&CG,,&Lao&CS,&Liu&H,&et&al.
JOURNAL&OF&PHYSICAL&CHEMISTRY&B&&&卷:&110&&&期:&29&&&页:&&&&出版年:&JUL&27&2006&(IF:&4.086)
3.&Direct&synthesis&and&structure&characterization&of&ultrafine&CeO2&nanoparticles&
Hu&CG,&Zhang&ZW,&Liu&H,&et&al.
NANOTECHNOLOGY,&17(24):&:&DEC&28&2006&(IF:&3.709)
4.&Preparation&of&highly&dispersed&YAG&nano-sized&powder&by&co-precipitation&method&
Xu&GG,&Zhang&XD,&He&W,&Liu&H,&Li&H,&Boughton&RI
MATERIALS&LETTERS,&60(7):&962-965:&APR&2006&(IF:&1.299)
5.&Inhomogeneity&of&composition&in&near-stoichiometric&LiNbO3&single&crystal&grown&from&Li&rich&melt&
Gao&L,&Wang&JY,&Liu&H&(corresponding&author),&et&al.
CRYSTAL&RESEARCH&AND&TECHNOLOGY,&41(4):&332-336:&APR&2006&(IF:&0.768)
6.&The&study&of&surfactant&application&on&synthesis&of&YAG&nano-sized&powders&
Xu&GG,&Zhang&XD,&He&W,&Liu&H,&Li&H
POWDER&TECHNOLOGY,&163(3):&202-205:&APR&28&2006&(IF:&1.219)
1.&&Bismuth&spheres&grown&in&self-nested&cavities&in&a&silicon&wafer&
Liu&H,&Wang&ZL
JOURNAL&OF&THE&AMERICAN&CHEMICAL&SOCIETY,&127(43):&:&NOV2&2005&(IF:&7.885)
2.&Etching&silicon&wafer&without&hydrofluoric&acid&
Liu&H,&Wang&ZL
APPLIED&PHYSICS&LETTERS,87(26):&261913:&DEC&26&2005&(IF:&4.127)
3.&Property&characterization&and&synthesis&of&Nd&:&YAG&by&solid-state&reaction&method&
Zhang&XD,&Xu&GG,&Wang&JY,&Liu&H
RARE&METAL&MATERIALS&AND&ENGINEERING,&34:&59-61,&JUN&2005&(IF:&0.4)
4.&White-beam&synchrotron&topographic&study&of&antiparallel&180&degrees&domains&in&near-stoichiometric&LiNbO3&grown&from&Li2O-rich&melt&
Gao&L,&Hu&XB,&Wang&JY,&Liu&H&(corresponding&author),&Xu&XG,&Yao&SH,&Zhu&PP,&Tian&YL,&Huang&WX
JOURNAL&OF&CRYSTAL&GROWTH,&283&(3-4):&409-412:&OCT&1&2005&(IF:&1.681)
5.&Growth&of&Bi2Se3&nanobelts&synthesized&through&a&co-reduction&method&under&ultrasonic&irradiation&at&room&temperature&
Liu&H,&Cui&HM,&Han&F,&et&al.
CRYSTAL&GROWTH&&&DESIGN,&5(5):&:&SEP-OCT&2005&(IF:&4.046)
6.&Optical&properties&of&stoichiometric&LiNbO3&waveguides&formed&by&low-dose&oxygen&ion&implantation&
Wang&XL,&Wang&KM,&Chen&F,&Fu&G,&Li&SL,&Liu&H,&Gao&L,&Shen&DY,&Ma&HJ,&Nie&R
APPLIED&PHYSICS&LETTERS,&86(4):&041103:&JAN&24&2005&(IF:&4.127)
7.&Solvothermal&synthesis&and&luminescent&properties&of&YAG&:&Tb&nano-sized&phosphors&
Li&X,&Liu&H&(corresponding&author),&Wang&JY,&et&al.
JOURNAL&OF&PHYSICS&AND&CHEMISTRY&OF&SOLIDS,&66&(1):&201-205:&JAN&2005&(IF:&1.41)&
1.&Production&of&nanosized&YAG&powders&with&spherical&morphology&and&nonaggregation&via&a&solvothermal&method&
Li&X,&Liu&H&(corresponding&author),&Wang&JY,&et&al.
JOURNAL&OF&THE&AMERICAN&CERAMIC&SOCIETY,&87(12):&:&DEC&2004&(IF:&1.792)
2.&Sol-gel&preparation&of&transparent&zinc&oxide&films&with&highly&preferential&crystal&orientation&
Li&HX,&Wang&JY,&Liu&H&(corresponding&author),&et&al.
VACUUM,&77(1):&57-62:&DEC&17&2004&(IF:&0.881)
3.&Synthesis&of&Bi2Se3&thermoelectric&nanosheets&and&nanotubes&through&hydrothermal&co-reduction&method&
Cui&HM,&Liu&H&(corresponding&author),&Li&X,&et&al.
JOURNAL&OF&SOLID&STATE&CHEMISTRY,&177(11):&:&NOV&2004&(IF:&2.149)
4.&Sonochemical&synthesis&of&bismuth&selenide&nanobelts&at&room&temperature&
Cui&HM,&Liu&H&(corresponding&author),&Wang&JY,&et&al.
JOURNAL&OF&CRYSTAL&GROWTH,&271(3-4):&456-461:&NOV&15&2004&(IF:&1.681)
5.&Influence&of&annealing&on&ZnO&films&grown&by&metal-organic&chemical&vapor&deposition&
Li&HX,&Liu&H&(corresponding&author),&Wang&JY,&et&al.
MATERIALS&LETTERS&&&58&(27-28)&:&:&NOV&2004&(IF:&1.681)
6.&YAG&:&Ce&nano-sized&phosphor&particles&prepared&by&a&solvothermal&method&
Li&X,&Liu&H&(corresponding&author),&Wang&JY,&et&al.
MATERIALS&RESEARCH&BULLETIN&&&39(12)&:&&:&OCT&4&2004&&(IF:&1.484)
7.&Synthesis&of&yttrium&aluminium&garnet(YAG)&nano-sized&powders&by&mixed&solvo-thermal&method&
Li&X,&Liu&H&(corresponding&author),&Wang&JY,&et&al.
JOURNAL&OF&INORGANIC&MATERIALS&&19&(5):&&:&SEP&2004&&(IF:&0.247)
8.&Growth&of&NaFe4P12&skutterudite&single&crystalline&nanosprings&synthesized&through&a&hydrothermal-reduction-alloying&method&
Liu&H,&Cui&HM,&Wang&JY,&et&al.
JOURNAL&OF&PHYSICAL&CHEMISTRY&B&&&108&(35)&:&:&SEP&2&2004&(IF:&4.032)
9.&Preparation&of&YAG&:&Nd&nano-sized&powder&by&co-precipitation&method&
Li&X,&Liu&H&(corresponding&author),&Wang&JY,&et&al.
MATERIALS&SCIENCE&AND&ENGINEERING&A-STRUCTURAL&MATERIALS&PROPERTIES&MICROSTRUCTURE&AND&PROCESSING&&&379(1-2)&:&347-350:&AUG&15&2004&(IF:&1.347)
10.&Directional&compounding&of&polyaniline&on&surface&of&NaFe4P12&whisker&
Liu&H,&Wang&JY,&Cui&HM,&et&al.
SYNTHETIC&METALS&&145&(1):&75-82&:&AUG&27&2004&&(IF:&1.320)
11.&Synthesis&of&spherical&YAG&powder&by&the&mixed&solvothermal&method&
Zhang&XD,&Liu&H&(corresponding&author),&Wang&JY,&et&al.
RARE&METAL&MATERIALS&AND&ENGINEERING&&&32&:&794-797&&Suppl.&1&:&DEC&2003&(IF:&0.286)
12.&Rapid&synthesis&of&YAG&nano-sized&powders&by&a&novel&method&
Li&X,&Liu&H&(corresponding&author),&Wang&JY,&et&al.
MATERIALS&LETTERS&&58&(19:&:&JUL&2004&(IF:&1.681)
13.&Synthesis&of&monodisperse&and&spherical&YAG&nanopowder&by&a&mixed&solvothermal&method&
Zhang&XD,&Liu&H&(corresponding&author),&He&W,&et&al.
JOURNAL&OF&ALLOYS&AND&COMPOUNDS&&&372&(1-2):&300-303:&JUN&9&2004&(IF:&1.562)
14.&Preparation&and&properties&of&YAG&nano-sized&powder&from&different&precipitating&agent&
Li&X,&Liu&H&(corresponding&author),&Wang&JY,&et&al.
OPTICAL&MATERIALS&&25&(4):&407-412&:&MAY&2004&(IF:&1.27)
15.&Spiral&growth&mechanisms&of&CMTD&crystals&
Wang&KP,&Sun&DL,&Zhang&JX,&Yu&WT,&Liu&H,&Hu&XB,&Guo&SY,&Geng&YL
JOURNAL&OF&CRYSTAL&GROWTH&&261&(1):&63-69&:&JAN&15&2004&(IF:&1.950)
1.&Zhang&XD,&Liu&H*,&Wang&JY,&Li&X,&He&W,&Xu&GG.&
Synthesis&of&spherical&YAG&powder&by&the&mixed&solvothermal&method,&RARE&METAL&MATERIALS&AND&ENGINEERING&32:&794-797&Suppl.&1,&DEC&2003&
2.&Zhao&SR,&Tan&J,&Wang&JY,&Xu&XH,&Liu&H.&
A&dendrite&with&&Sierpinski&gasket&&fractal&morphology&in&matt&glaze&of&LiAlSiO4-SiO2&system,&FRACTALS-COMPLEX&GEOMETRY&PATTERNS&AND&SCALING&IN&NATURE&AND&SOCIETY&11&(3):&271-276&SEP&2003
3.&&Hu&XB,&Liu&H,&Wang&JY,&Zhang&HJ,&Jiang&HD,&Jiang&SS,&Li&Q,&Tian&YL,&Huang&YY,&Huang&WX,&He&W.&Comparative&study&of&KTiOPO4&crystals,&
OPTICAL&MATERIALS&23&(1-2):&369-372&JUL-AUG&2003
4.&Jiang&HD,&Wang&JY,&Zhang&HJ,&Hu&XB,&Liu&H.&
Growth&and&thermal&properties&of&LaCa4O(BO3)(3)&crystals,&&OPTICAL&MATERIALS&23&(1-2):&461-464&JUL-AUG&2003
5.&Liu&H,&Wang&JY,&Shi&RJ,&Hu&XB.&
Nano-dendrites&in&NaFe4P12&nano-wires&synthesized&by&hydrothermal&method,&OPTICAL&MATERIALS&23&(1-2):&475-478&JUL-AUG&2003
6.&&Jiang&HD,&Li&DW,&Zhang&KQ,&Liu&H,&Wang&JY.&
Optical&and&thermal&properties&of&nonlinear&optical&crystal&LaCa4O(BO3)(3),&CHEMICAL&PHYSICS&LETTERS&372&(5-6):&788-793&MAY&6&2003
7.Hu&XB,&Wang&JY,&Zhang&HJ,&Jiang&HD,&Liu&H,&Mu&XD,&Ding&Y.&
Dependence&of&photochromic&damage&on&polarization&in&KTiOPO4&crystals,&JOURNAL&OF&CRYSTAL&GROWTH&247&(1-2):&137-140&JAN&2003&&&
1.&Jiang&HD,&Wang&JY,&Hu&XB,&Liu&H,&Liu&XY.&
Optical&transition&properties&of&Er3+&ions&in&YAl3(BO3)(4)&crystal,&&CHEMICAL&PHYSICS&LETTERS&365&(3-4):&279-284&NOV&5&2002
2.&Zhao&SR,&Wang&JY,&Sun&DL,&Li&J,&Liu&H.&&
Growth&and&melting&of&the&cleavage&face&{10(1)over-bar1}&of&Yb&:&YAl3(Bo(3))(4)&crystal,&
SURFACE&REVIEW&AND&LETTERS&9&(3-4):&&JUN-AUG&2002
3.&Jiang&HD,&Wang&JY,&Zhang&HJ,&Hu&XB,&Liu&H.&
Optical-transition&properties&of&the&Nd3+&ion&in&Gd0.8La0.2VO4&crystal,&
JOURNAL&OF&APPLIED&PHYSICS&92&(7):&&OCT&1&2002
4.&&Hu&XB,&Wang&JY,&Liu&H,&Guo&M,&Pan&HF,&Jiang&HD,&Zhang&HJ,&Wu&XS,&Jiang&SS.&&
Investigation&on&the&spontaneous&strain&and&ferroelastic&domain&structures&in&NdP5O14&crystals&by&high&resolution&X-ray&diffractometry,&
FERROELECTRICS&274:&157-163&2002
5.&&Zhao&SR,&Tan&J,&Wang&JY,&Hu&XB,&Liu&H.&
Triangular&dendrites&of&LiAlSiO4-SiO2:&evolution&between&threefold-&and&sixfold-symmetric&morphologies,&
JOURNAL&OF&APPLIED&CRYSTALLOGRAPHY&35:&455-458&Part&4,&AUG&2002
6.&Teng&B,&Wang&JY,&Wang&ZP,&Hu&XB,&Jiang&HD,&Liu&H,&Cheng&XF,&Dong&SM,&Liu&YG,&Shao&ZS.&
Crystal&growth,&thermal&and&optical&performance&of&BiB3O6,&
JOURNAL&OF&CRYSTAL&GROWTH&240&(1-2):&331-331&APR&2002
7.&Teng&B,&Wang&JY,&Wang&ZP,&Jiang&HD,&Liu&H,&Hu&XB,&Dong&SM,&Liu&YG,&Shao&ZS.&
Crystal&growth,&structure&and&properties&of&bismuth&triborate&BiB3O6&crystal,&
SCIENCE&IN&CHINA&SERIES&E-TECHNOLOGICAL&SCIENCES&45&(1):&19-26&FEB&2002&
8.&&Teng&B,&Wang&ZP,&Jiang&HD,&Cheng&XF,&Liu&H,&Hu&XB,&Dong&SM,&Wang&JY,&Shao&ZS.&
Anisotropic&thermal&expansion&of&BiB3O6,&
JOURNAL&OF&APPLIED&PHYSICS&91&(6):&&MAR&15&2002
9.&&Liu&H,&Wang&JY,&Hu&XB,&Li&LX,&Gu&F,&Zhao&SR,&Gu&MY,&Boughton&RI,&Jiang&MH.&
Preparation&of&filled&skutterudite&nanowire&by&a&hydrothermal&method.&&
JOURNAL&OF&ALLOYS&AND&COMPOUNDS&334:&313-316&FEB&28&2002
10.&&Liu&H,&Hu&XB,&Wang&JY,&Zhang&CQ,&Zhao&SR,&Jiang&HD,&Gu&MY,&Zhang&LM.&
Growth&mechanism&of&single&crystal&NaFe4P12&nanowires,&
JOURNAL&OF&CRYSTAL&GROWTH&234&(4):&679-682&FEB&2002
11.&Jiang&HD,&Wang&JY,&Hu&XB,&Liu&H,&Zhang&CQ,&Teng&B,&Li&J.&
Growth&and&optical&properties&of&ErCa4O(BO3)(3)&crystal,&
JOURNAL&OF&CRYSTAL&GROWTH&234&(4):&699-703&FEB&2002
1.&Research&on&crystal&growth&and&properties&of&a&new&nonlinear&optical&crystal:&Bismuth&borate&BiB3O6&
Teng&B,&Wang&JY,&Wang&ZP,&Jiang&HD,&Song&RB,&Liu&H,&Hu&XB,&Liu&YG,&Wei&JQ,&Shao&ZS
CHINESE&SCIENCE&BULLETIN&&46&(21):&&:&NOV&2001&(IF:0.683)
2.&Growth&of&Yb&:&YAl3(BO3)(4)&crystals&and&their&optical&and&self-frequency-doubling&properties&
Jiang&HD,&Li&J,&Wang&JY,&Hu&XB,&Liu&H,&Teng&B,&Zhang&CQ,&Dekker&P,&Wang&P
JOURNAL&OF&CRYSTAL&GROWTH&&&233(1-2):&248-252:&NOV&2001&(IF1.707)
3.&Crystal&growth,&thermal&and&optical&performance&of&BiB3O6&
Teng&B,&Wang&JY,&Wang&ZP,&Hu&XB,&Jiang&HD,&Liu&H,&Cheng&XF,&Dong&SM,&Liu&YG,&Shao&ZS
JOURNAL&OF&CRYSTAL&GROWTH&&233&(1-2):&282-286:&NOV&2001&(IF1.707)
4.&Top-seeded&growth&of&K2Al2B2O7&
Zhang&CQ,&Wang&JY,&Hu&XB,&Liu&H,&Wei&JQ,&Liu&YG,&Wu&YC,&Chen&CT
JOURNAL&OF&CRYSTAL&GROWTH&&231(4):&439-441:&NOV&2001&(IF1.707)
5.&Twin&structure&in&Yb&:&YAl3(BO3)(4)&crystal&
Zhao&SR,&Wang&JY,&Sun&DL,&Hu&XB,&Liu&H
JOURNAL&OF&APPLIED&CRYSTALLOGRAPHY&&&34&:&661-662,5:&OCT&2001&(IF3.534)
6.&Spectral&properties&of&Nd-doped&BiB3O6&crystal&
Jiang&HD,&Teng&B,&Wang&JY,&Hu&XB,&Liu&H,&Zhang&CQ
SCIENCE&IN&CHINA&SERIES&B-CHEMISTRY&&44(5):&510-515:&OCT&2001&(IF0.817)
7.&Raman&spectroscopy&investigation&of&partially&filled&skutterudite&
Li,&LX;&Liu,&H;&Wang,&JY,&et&al.
CHEMICAL&PHYSICS&LETTERS&&&347(&4-6):&373-377&:&OCT&26&2001&(IF2.438)
8.&Image&shifts&resulting&from&the&misorientation&of&two&individuals&in&GdCa4O(BO3)(3)&crystal&
Hu&XB,&Wang&JY,&Jiang&SS,&Liu&H,&Guo&M,&Jiang&HD,&Zhang&CQ,&Tian&YL,&Huang&WX
1st&Asian&Conference&on&Crystal&Growth&and&Crystal&Technology,&AUG&29-SEP&01,&2000&
SENDAI&JAPAN&JOURNAL&OF&CRYSTAL&GROWTH&&229(1):&252-255:&2001&(IF1.707)&
9.&Growth&and&defects&in&YbxY1-xAl3(BO3)(4)&crystals&
Wang,&JY;&Hu,&XB;&Liu,&H,&et&al.
1st&Asian&Conference&on&Crystal&Growth&and&Crystal&Technology,&AUG&29-SEP&01,&2000&SENDAI&JAPAN&JOURNAL&OF&CRYSTAL&GROWTH&&229(1):&256-260:&2001&(IF1.707)&
10.&Observation&of&inhomogeneity&in&congruent&LiTaO3&crystal&
Hu&XB,&Jiang&HD,&Liu&H,&Jiang&SS,&Li&Q,&Wang&JY,&Zhang&CQ,&Teng&B,&Tian&YL,&Huang&WX
JOURNAL&OF&CRYSTAL&GROWTH&&&225(1):&6-8&:&MAY&2001&(IF1.707)&
11.&Growth&and&investigation&of&a&new&nonlinear&optical&crystal:&bismuth&borate&BiB3O6&
Teng&B,&Wang&JY,&Wang&ZP,&Jiang&HD,&Hu&XB,&Song&RB,&Liu&H,&Liu&YG,&Wei&JQ,&Shao&ZS
JOURNAL&OF&CRYSTAL&GROWTH&&224(&3-4):&280-283:&APR&2001&(IF1.707)
12.&Preparation&of&Na1+xFe4P12&whiskers&by&hydrothermal&reduction&alloying&synthesis&method&
Liu,&H;&Wang,&JY;&Hu,&XB,&et&al.
CHEMISTRY&OF&MATERIALS&&13(1):&151-154:&JAN&2001&(IF4.103)
13.&Image&shifts&resulting&from&the&misorientation&of&two&individuals&in&GdCa4O(BO3)(3)&crystal&
Xiaobo&Hu,&Jiyang&Wang,&Shusheng&Jiang,&Hong&Liu,&Ming&Guo,&Huaidong&Jiang,&Chengqian&Zhang,&
Yulian&Tian&and&Wanxia&Huang
1st&Asian&Conference&on&Crystal&Growth&and&Crystal&Technology,&AUG&29-SEP&01,&2000&SENDAI,&
JOURNAL&OF&CRYSTAL&GROWTH&&&229(1):&252-255&:&JUL&2001&(IF1.707)
科研项目:
1. 国家杰出青年科学基金项目,&无机非金属类光电信息功能材料&(NSFDYS:)独立承担,起止日期:&3.12
2. 自然科学基金重大项目:高纯、单分散、均匀掺杂、高烧结活性纳米粉体的可控制备&()&(透明陶瓷激光介质材料制备与性能调控)起止日期:3.12&课题组长
3. 国家高技术研究发展计划(863)项目&化学计量比铌酸锂生长技术和批量生产技术&()(重点课题);起止日期:05.06月;课题组长&
4. 国家高技术研究发展计划(863)项目&&近化学计量比铌酸锂批量生产的关键技术&&()(重点课题);起止日期:10.11月;课题组长&
5. 国家自然科学基金-创新研究群体科学基金,&具有重大应用前景的功能晶体材料&();起止日期:3.12;主要成员&
6. 国家自然科学基金面上项目&&化学法制备硫族化合物半导体薄膜和量子阱的研究&()起止日期:08.12;负责人&
7. 国家自然科学基金面上项目,&表面异质结构对二氧化钛纳米带光电与气敏性能的调控机理及应用探索&();负责人起止日期:11.12
8. 国家重点基础研究计划(973)项目&具有重大应用前景的人工晶体的生长和制备研究&(),起止日期:8.12;&
课题组成员:
博士后&Postdoctoral&fellows
个人简历:
主要研究方向:
主要研究成果:
--------------------------------------------------------------------------------
博士生&PhD&Candidates&
主要研究方向:骨组织工程&生物材料
主要研究成果:
Hongshi&Zhao,&Guancong&Wang,&Hong&Liu&et&al.&In&vitro&Biomimetic&Construction&of&Hydroxyapatite&&Porcine&Acellular&Dermal&Matrix&Composite&Scaffold&for&MC3T3-E1&Preosteoblast&Culture.&Tissue&Engineering&Part&A.&-6):&765-776&
联系方式&TEL:
主要研究方向:
主要研究成果:
颜涛(与王继扬老师合作指导)
主要研究方向:材料学&人工晶体
主要研究成果:高质量铌酸锂(同成分、计量比、掺杂)、钽酸锂晶体生长
1.Tao&Yan,&Feifei&Zheng,&Yonggui&Yu,&Shubin&Qin,&Hong&Liu*,&Jiyang&Wang&and&Dehong&Yu,&Formation&mechanism&of&black&LiTaO3&single&crystals&through&chemical&reduction,J.Appl.Cryst.-162.
2.Tao&Yan,&Hong&Liu*,&Jiyang&Wang*,&Feifei&Zheng,&Shuhua&Yao,&Zongren&Xia,&Jianbo&Wu,&Robert&I.&Boughton,Influence&of&chemical&reduction&on&optical&and&electrical&properties&of&LiTaO3&crystal,&J.&Alloys&Compd.,-415.
联系方式:
主要研究方向:
主要研究成果:
主要研究方向:激光陶瓷透明介质的研究重要研究成果:
主要研究成果:
周伟家&(与王继扬教授合作指导)&
主要研究方向:&1.一维TiO2纳米材料合成及性能研究。&2.半导体纳米异质结构合成及性能研究。
主要研究成果:&
1.&Weijia&Zhou,&Hong&Liu*,&Jiyang&Wang*,&Duo&Liu,&Guojun&Du,&Shujuan&Han,&Jianjian&Lin&and&Ruijun&Wang,&Interface&dominated&high&photocatalytic&properties&of&electrostatic&self&assembled&Ag2O/TiO2&heterostructure,&Phys.&Chem.&Chem.&Phys.,&119-15123
&2.&Weijia&Zhou,&Hong&Liu,*&Jiyang&Wang,&Duo&Liu,&Guojun&Du,&and&Jingjie&Cui,&Ag2O/TiO2&Nanobelts&Heterostructure&with&Enhanced&Ultraviolet&and&Visible&Photocatalytic&Activity,&ACS&Appl.&Mater.&Inter.,&2&(8),&&2392&
3.&Weijia&Zhou,&Hong&Liu,*&Robert&I.&Boughton,*&Guojun&Du,&Jianjian&Lin,&Jiyang&Wang&and&Duo&Liu,&One-dimensional&single-crystalline&Ti&O&based&nanostructures:&properties,&synthesis,&modifications&and&applications,&J.&Mater.&Chem.,&20,&&6008.&
联系方式&Email:&
秦海明&(与王继扬教授合作指导)&
主要研究方向:
主要研究成果:
主要研究方向:钛基材料表面微纳米结构构建&生物材料
主要研究成果:
硕士生&MSc&Students&
主要研究方向:二氧化钛纳米带及其异质结构的制备与气敏性能研究
主要研究成果:Peiguang&Hu,&Guojun&Du,&Weijia&Zhou,&Jingjie&Cui,&Jianjian&Lin,&Hong&Liu,&Duo&Liu,&Jiyang&Wang,&Shaowei&Chen,&Enhancement&of&Ethanol&Vapor&Sensing&of&TiO2&Nanobelts&by&Surface&Engineering,&ACS&Appl.&Mater.&Interfaces,&63&3269.
林健健&(与山东轻工业学院沈建兴教授合作指导)
主要研究方向:纳米材料,光催化
主要研究成果:
1.&&&&&&Jianjian&Lin,&Jianxing&Shen*,&Ruijun&Wang,&Jingjie&Cui,&Weijia&Zhou,&Duo&Liu,&Hong&Liu&&&,&Jiyang&Wang,&Robert&I.&Boughton,&Yuanzheng&Yue,&&Nano-p-n-Junctions&on&the&Surface-Coarsened&TiO2&Nanobelts&and&their&Enhanced&Photocatalytic&Activity&&
Journal&of&Materials&Chemistry,&),&.&(IF=4.795)
2.&&&&&&Jianjian&Lin,Jianxing&Shen*,&Ruijun&Wang,&&Hong&Liu&&&,&Jingjie&Cui,&Weijia&Zhou,&Enhancement&of&Photocatalytic&Properties&of&TiO2&Nanobelts&through&Surface-coarsening&and&Surface&Nanoheterostructure&Construction&&
Materials&Science&and&Engineering:B,&in&revision.&(IF=1.756)
刘庆波&(与夏海兵教授合作指导)&
主要研究方向:
主要研究成果:
主要研究方向主要研究成果:
主要研究方向:
主要研究成果:
主要研究方向:纳米银抗菌性能
主要研究成果:
联系方式:baimao2.&
主要研究方向:骨组织工程支架材料主要研究成果:
联系方式:jianhua_&/profile.do?id=&
范家东&(与江怀东教授合带)
主要研究方向:
主要研究成果:
已经毕业的研究生&
韩峰&硕士&
毕业时间:2006.06&
现工作单位:&Forschungszentrum&J&lich&GmbH&52425&J&lich&Sitz&der&Gesellschaft:&J&lich&Eingetragen&im&Handelsregister&des&Amtsgerichts&D&ren&Nr.&HR&B&3498&
王彦敏&博士&
毕业时间:2009.06&
现工作单位:&山东省交通学院
姚淑华&博士
毕业时间:2009.06&
现工作单位:南京大学材料科学与工程学院
硕士毕业时间:2008.06&
现工作单位:
杨顺亮&硕士
毕业时间:2006.06&
现工作单位:&
博士毕业时间:2010.06&
现工作单位:安徽工业大学材料科学与工程学院&
堵国君&硕士
毕业时间:2010.06&
现工作单位:新加坡国立大学化学系&在读博士&
已经毕业的合作指导的研究生&
崔洪梅&硕士&(与王继扬老师合作指导)
毕业时间:2005.06&
现工作单位:中非集团人工晶体研究院
高磊&博士&(与王继扬老师合作指导)
毕业时间:
现工作单位:石油大学物理系
黄林勇&博士&(与王继扬老师合作指导)
毕业时间:2010.12&
现工作单位:中非集团人工晶体研究院
赵越&博士(与王春雷老师合作指导)
毕业时间:2010.12
&现工作单位:&江苏大学
电子邮件:hongliu@&电话:7&
联系地址:山东济南山大南路27号山东大学晶体材料研究所
Email:hongliu@
邮编:250100
1.人工晶体材料:主要是高品质包括近化学计量比及掺镁铌酸锂、钽酸锂晶体材料
2.激光陶瓷i材料:稀土掺杂YAG和Y2O3透明激光陶瓷材料
3.纳米材料及其应用:主要集中在二氧化钛纳米带表面异质结构及其在光催化、气敏和生物传感器方面的应用
4.组织工程材料:具有二级三维网络结构的天然高分子-羟基磷灰石微纳结构骨组织工程支架及干细胞在支架上的分化及组织修复基础研究
毕业生将适合从事功能晶体、激光陶瓷材料,生物材料及纳米材料与器件等相关工作。&
(责任编辑:admin)
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