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南京大学化学化工学院导师教师师资介绍简介-侯文华

本站小编 Free考研考试/2021-02-15

职务:
联系电话:
办公地址: 化学楼C313
电子邮箱: whou@nju.edu.cn

课题组主页:





个人简介


1966年6月出生于江苏省张家港市,1981年9月进入南京大学化学系,1985年7月获学士学位,1988年7月获硕士学位;1988年7月至1990年9月在中科院南京土壤研究所从事土壤物理化学研究工作,任助理研究员;1990年9月重回南京大学化学系学习,1993年9月获博士学位,后留校工作至今。2000年被聘为教授,2001年被聘为博士生导师。其中,1997年8月至1998年5月美国纽约州立大学Albany分校化学系访问****,2003年4月至2003年9月美国加州大学San Diego分校访问****。主持和主要参加完成了国家自然科学基金和973子课题等各类项目共计15项;已发表研究论文200余篇,曾获教育部自然科学奖一等奖和科技进步二等奖各1次、国家级教学成果二等奖1次、江苏省高等教育教学成果特等奖1次和一等奖2次、霍英东教育基金全国优秀青年教师奖、宝钢教育基金全国优秀教师奖、第二届南京大学教学名师、第一届南京大学“赵世良”讲座教授、南京大学青年教师学术研究奖、南京大学青年教师育才奖、南京大学青年教师樱松贰等奖和南京大学化学化工学院“中诚信教书育人奖”优秀奖。
详情请浏览侯文华教授课题组主页:http://hysz.nju.edu.cn/wenhuahou/

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工作经历


1981-1985, 南京大学化学系,学士
1985-1988, 南京大学化学系,硕士
1988-1990, 中科院南京土壤研究所,助理研究员
1990-1993, 南京大学化学系,博士
1997-1998, 美国纽约州立大学Albany分校化学系访问****
2003.04-09,美国加州大学San Diego分校访问****
1993-至今,南京大学化学化工学院,教授、博士生导师

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研究方向


1.一些独特结构功能材料的制备化学和电化学性能研究
A unique sandwich MoO3/Chybrid nanostructure assembled by α-MoO3and graphene layers at a molecular level provides more accessible active sites and bicontinuous pathways for quick transfer of charges inside the interlayers. Furthermore, it also exhibits an excellent structure stability in the chare/discharge process due to the existence of intercalated graphene. These factors endow the resulted electrode material with a high rate discharge capability accompanying with a long cycle life.


Uniform MoO2@C hollownanospheres are facilely fabricated through a hydrothermal process, and exhibitsuperior lithium-ion storage properties.




2.基于层状过渡金属氧化物的新型催化剂研究
N-doped and S-doped Na2Ti6O13@TiO2core-shell nanobelts with specifically exposed {101} facetswere facilely prepared and showed adramatic enhanced visible-light photocatalytic activity and stabilityfor the degradation ofmethylene blue (MB) owing to the combined effect of hybridization, morphology engineering and doping.


Sulfur and iron co-doped titanoniobate nanosheets were prepared and evaluated in alcoholysis of styrene epoxide. The resulted co-doped catalyst exhibited an excellent catalytic performance (yield of 99 % with methanol as nucleophile in only 1h at room temperature) and may act as a promising candidate in many acid-catalyzed reactions.


Heterogeneous chiral catalysts with different structure, surface character and location of active species were assembled by salenMn(III) complex andα-Zr(HPO4)2nanosheets. The bumpy edge-accumulated surfaces of nanosheets lead the catalyst to have a high ee value without axial base in the asymmetric epoxidation ofα-methylstyrene.

3.基于自组装的、具有微/纳米3D多级结构的新型稀土发光材料的研究
A facile and effective EDTA-assisted hydrothermal approach was employed to synthesize tetragonal NaEu(MoO4)2. The formation of NaEu(MoO4)2microrugbies involves an evolution from 0D primary nanoparticles to 2D nanosheets and eventually to 3D rugby-like structures by means of oriented self-assembly. The luminescence properties of the obtained NaEu(MoO4)2microrugbies are closely correlated with the size and crystallinity. The emission intensities of the calcined products are about 40 times stronger than those of uncalcined ones, and the dominant red emission centered at 617 nm means a high red color purity, which is crucial to potential applications.


Pure-phase monoclinic La2(WO4)3nanocrystals and uniform spindle-like tetragonal NaLa(WO4)2nano/microcrystals with tunable sizes have been selectively synthesized through a hydrothermal method with the assistance of non-toxic glycerine, based on one reaction system. The La2(WO4)3:Eu3+nanocrystals prepared have a very high red chromaticity, and the critical doping concentration of Eu3+can be as high as 45 mol% due to the unique distorted scheelite structure of La2(WO4)3. The maximum absorption of La2(WO4)3:Eu3+is exactly located in the blue region (467 nm), hence La2(WO4)3:Eu3+could be used in combination with the GaN-based blue light-emitting diodes (LEDs) for white light emitting. Moreover, the resultant La2(WO4)3:Eu3+nanocrystals could be dispersed in distilled water and emitted a bright red color under ultraviolet transmittance irradiation.

Excitation (left) and emission (right) spectra of NaLa(WO4)2: 5 mol% Ln3+microspindle: (a) Ln3+= Eu3+; (b) Ln3+= Tb3+; (c) Ln3+= Tm3+. The right corners are their corresponding photographs under the UV irradiation.

A facile and general method was successfully developed to prepare uniform submicrometer-sized heavy lanthanide orthovanadates (LnVO4, Ln = Tb, Dy, Er, Tm, Yb, Lu) hollow spheres and Ho(OH)CO3@ HoVO4yolk-shell structures by employing corresponding Ln(OH)CO3colloidal spheres as the reaction precursor as well as a sacrificial template without the assistance of any surfactant. By modulating the amount of NH4VO3introduced and the diameter of Lu(OH)CO3spheres, the textural parameters of the resulted LuVO4hollow spheres can be easily tuned. Under ultraviolet excitation, the obtained LuVO4:Eu3+hollow spheres showed a strong red emission located in the saturated red color region. The modulation of the PL emission intensity and color purity for the tetragonal LuVO4:Eu3+materials could be realized through tuning the textural parameters of as-obtained hollow spheres. Particularly, the double-shelled LuVO4:Eu3+hollow sample has the highest quantum efficiency. The as-obtained LuVO4hollow spheres showed great biocompatibility, which favors their potential applications in biological fields such as drug delivery, disease therapy, medical imaging, cell biology and diagnosis etc.




学术成果



2015
1.Hongmei Ji, Xiaolin Liu, Zhijuan Liu, Bo Yan, Lin Chen, Yafeng Xie, Chao Liu, WenhuaHou,* and Gang Yang*, “In Situ Preparation of Sandwich MoO3/C Hybrid Nanostructures for High-Rate and Ultralong-Life Supercapacitors”, Adv. Funct. Mater., 25, 1886~1894(2015). 
2.Chao Liu, Tao Sun, Liang Wu, Jiyuan Liang, Qianjin Huang, Jing Chen, Wenhua Hou*, “N-doped Na2Ti6O13@TiO2 core–shell nanobelts with exposed {101} anatase facets and enhancedvisible light photocatalytic performance”, Applied Catalysis B: Environmental, 170, 17~24  (2015). 
3.Xiaolin Liu, Di Wu, Wenxu Ji and Wenhua Hou*, “Uniform MoO2@carbonnanospheres with superior lithium-ion storage properties”, J. Mater. Chem. A, 3, 968~972 (2015). 
4.Chao Liu, Ji-yuan Liang, Rui-rui Han, Yong-zheng Wang, Jin Zhao, Qian-jin Huang, Jing Chen* and Wen-hua Hou*, “S-doped Na2Ti6O13@TiO2 core–shell nanorods with enhanced visible light photocatalytic performance”, Phys. Chem. Chem. Phys., 17, 15165~15172 (2015). 
5.梅伟钢,胡晨晖,刘超,陈建,黄前进,张荣,陈静*,侯文华*, “具有优异太阳光下降解甲基橙性能的钛酸铋基材料”, 中国科技论文在线(http://www.paper.edu.cn), 201503-373 (5星), 2015.

2014
1.Chao Liu, Liang Wu, Jing Chen*, Ji-yuan Liang, Chang-shun Li, Hong-mei Ji, Wen-hua Hou*, “Nanocomposite of polyaniline and nitrogen-doped layered HTiNbO5 with an excellent visible-light photocatalytic performance”, Phys. Chem. Chem. Phys., 16, 13409~13417(2014).
2.Xiaolin Liu, Wenxu Ji, Jiyuan Liang, Luming Peng and Wenhua Hou*, “MoO2@carbon hollow microspheres with tunable interiors and improved lithium-ion battery anode properties”, Phys. Chem. Chem. Phys., 16, 20570—20577(2014).
3.Chenhui Hua, Lihong Zhang, Junfeng Zhang, Liyuan Cheng, Zheng Zhai, Jing Chen, WenhuaHou*, “Template-free method to prepare porous Cu-containing nanotubes with a good catalyticperformance for styrene epoxidation”, Applied Surface Science, 298, 116~124(2014).
4.Xiaolin Liu, Wenhua Hou*, Xiaoyan Yang and Jiyuan Liang, “Morphology controllablesynthesis of NaLa(WO4)2: the morphology dependent photoluminescent properties and single-phased white light emission of NaLa(WO4)2:Eu3+/Tb3+/Tm3+”, CrystEngComm., 16, 1268~1276(2014).
5.Lin Xu, Xiaoyan Yang, Haimeng Lu, Chenhui Hu and Wenhua Hou*, “NaY(MoO4)2microcrystals with controlled faceting and their tunable photoluminescence properties afterdoping with Eu3+”, RSC Adv., 4, 13502~13508(2014).
6.Chenhui Hu, Lihong Zhang, Liyuan Cheng, Jing Chen*, Wenhua Hou*, Weiping Ding, “Acomparison of H+-restacked nanosheets and nanoscrolls derived from K4Nb6O17 for visible-light degradation of dyes”, Journal of Energy Chemistry, 23, 136~144(2014).
7. 张丽宏、胡晨晖、张俊峰、程立媛、侯文华*、陈静*, “铁掺杂HTiNbO5纳米片及其催化环氧苯乙烷醇解的性能”,无机化学学报,30(8), 1813~1820(2014).

2013
1. Xiaoyan Yang, Ye Zhang, Lin Xu, Zheng Zhai, Mingzhen Li, Meng Li, XiaolinLiu and Wenhua Hou*, “Surfactant-free sacrificial template synthesis of submicrometer-sized YVO4:Eu3+ hierarchical hollow spheres with tunable textual parameters and luminescent properties”, Dalton Trans., 42, 3986~3993(2013).
2. Xiaoyan Yang, Lin Xu, Zheng Zhai, Fangfang Cheng, Zhenzhen Yan, Xiaomiao Feng, Junjie Zhu, and Wenhua Hou*, “Submicrometer-Sized Hierarchical Hollow Spheres of Heavy Lanthanide Orthovanadates: Sacrificial Template Synthesis, Formation Mechanism, and Luminescent Properties”, Langmuir, 29, 15992~16001(2013).
3.Xiaoyan Yang, Zheng Zhai, Lin Xu, Mingzhen Li, Ye Zhang and Wenhua Hou*, “LaCO3OH microstructures with tunable morphologies: EDTA-assisted hydrothermal synthesis, formation mechanism and adsorption properties”, RSC Adv., 3, 3907~3916(2013).
4.Xiaolin Liu, Wenhua Hou,* Xiaoyan Yang and Qingming Shen, “Pure-phase La2(WO4)3:Eu3+ nanocrystals and spindle-like NaLa(WO4)2:Yb3+/Er3+ nano/microcrystals: selective synthesis, morphologies and photoluminescent properties”, Dalton Trans., 42, 11445~11454(2013).
5.Xiaomiao Feng*, Zhenzhen Yan, Ruimei Li, Xingfen Liu, Wenhua Hou*, “The synthesis of shape-controlled polypyrrole/graphene and the study of its capacitance properties”, Polym. Bull., 70, 2291~2304(2013).
6.Xiaomiao Feng*, Zhenzhen Yan, Ningna Chen, Yu Zhang, Xingfen Liu,Yanwen Ma, Xiaoyan Yang and Wenhua Hou*, “Synthesis of a graphene/polyaniline/MCM-41 nanocomposite and its application as a supercapacitor”, New J. Chem., 37, 2203~2209(2013).
7.Xiaomiao Feng*, Yu Zhang, Zhenzhen Yan, Ningna Chen, Yanwen Ma, Xingfen Liu, Xiaoyan Yang and Wenhua Hou*, “Self-degradable template synthesis of polyaniline nanotubes and their high performance in the detection of dopamine”, J. Mater. Chem.A, 1, 9775~9780(2013).
8. Lihong Zhang, Chenhui Hu, Junfeng Zhang, Liyuan Cheng, Zheng Zhai,Jing Chen, Weiping Ding and Wenhua Hou*, “Sulfur and iron co-doped titanoniobate nanosheets: a novel efficient solid acid catalyst for alcoholysis of styrene epoxide at room temperature”, Chem. Commun., 49, 7507~7509(2013).
9. Lihong Zhang, Chenhui Hu, Liyuan Cheng, Weiping Ding, Wenhua Hou*, Jing Chen*, “S-doped HTiNbO5 nanosheets: A novel efficient visible-light photocatalyst”, Chinese Journal of Catalysis, 34, 2089~2097(2013).
10.李猛,胡晨晖,江春涛,杨惠,陈才,侯文华,陈静*,“通过接枝苄基磺酸在MCM41上固载手性Mn(salen)配合物”,无机化学学报,29(11), 2339~2346(2013)。

2012
1. Zheng Zhai, Xiaoyan Yang, Lin Xu, Chenhui Hu, Lihong Zhang, Wenhua Hou* and Yining Fan, “Novel mesoporous NiO/HTiNbO5 nanohybrids with high visible-light photocatalytic activity and good biocompatibility”, Nanoscale, 4, 547~556 (2012).
2. Zheng Zhai, Chenhui Hu, Xiaoyan Yang, Lihong Zhang, Chao Liu, Yining Fan and Wenhua Hou*, Nitrogen-doped mesoporous nanohybrids of TiO2 nanoparticles and HTiNbO5 nanosheets with a high visible-light photocatalytic activity and a good biocompatibility, J. Mater. Chem., 22, 19122~19131(2012).
3. Lin Xu, Xiaoyan Yang, Zheng Zhai, Daxian Gu, Huan Pang and Wenhua Hou*, “Self-assembled 3D architectures of NaCe(MoO4)2 and their application as absorbents”, CrystEngComm, 14, 7330~7337(2012).
4. Chenhui Hu, Lihong Zhang, Junfeng Zhang, Liyuan Cheng, Zheng Zhai, Meng Li, Jing Chen, Wenhua Hou*, “Structure-control in assembly of nanosheets: Novel chiral catalysts for the asymmetric epoxidation of α-methylstyrene without axial base”, Catalysis Communications, 28, 111~115(2012).
5. 冯晓苗*,李瑞梅,杨晓燕,侯文华*, “新型碳纳米材料在电化学中的应用”,化学进展,24(11), 2158~2166(2012).
6. Xiaomiao Feng*, Chen Wang, Rongjing Cui, Xiaoyan Yang, Wenhua Hou, “The synthesis of nitrogen-doped carbon nanotubes/gold composites and their application to the detection of thioridazine”, J Solid State Electrochem 16, 2691~2698 (2012).
7. Qingming Shen, Shiwei Zhou, Xiaomei Zhao, Li-Ping Jiang*, Wenhua Hou and Jun-Jie Zhu, “Anatase TiO2 nanoparticle–graphene nanocomposites: One-step preparation and their enhanced direct electrochemistry of hemoglobin”, Anal. Methods, 4, 619~622(2012).
8. Xian-Ji Guo*, Wen-Hua Hou, Yi-Ning Fan, Wei-Ping Ding, “Intercalation behaviors of chiral titanium(IV) (triethanolaminato)-isopropoxide Ti(C2H4O)3N(OCH(CH3)2) in protonated lamellar metal oxides and characterization of the intercalated resultants”, J Incl Phenom Macrocycl Chem, 73, 211~218 (2012).
9. Xiaomei Zhao, Shiwei Zhou, Li-Ping Jiang, Wenhua Hou, Qingming Shen,* and Jun-Jie Zhu*, “Graphene–CdS Nanocomposites: Facile One-Step Synthesis and Enhanced Photoelectrochemical Cytosensing”, Chem. Eur. J. 18, 4974 ~ 4981(2012).

2011
1.Qingming Shen, Qianhao Min, Jianjun Shi, Liping Jiang, Wenhua Hou *, Jun-Jie Zhu **, “Synthesis of stabilizer-free gold nanoparticles by pulse sonoelectrochemical method”, Ultrasonics Sonochemistry, 18, 231~237(2011).
2.Zheng Zhai, Yucheng Huang, Lin Xu, Xiaoyan Yang, Chenhui Hu, Lihong Zhang, Yining Fan, Wenhua Hou*, “Thermostable nitrogen-doped HTiNbO5 nanosheets with a high visible-lightphotocatalytic activity”, Nano Res., 4(7), 635~647(2011).
3.Xiaomiao Feng*, Ruimei Li, Chenhui Hu, Wenhua Hou*, “Direct electron transfer and electrocatalysis of hemoglobin immobilized on graphene-Pt nanocomposite”, J Electroanal. Chem., 657(1~2), 28~33(2011).
4.Lin Xu, Xiaoyan Yang, Zheng Zhai, Xing Chao, Zihui Zhang and Wenhua Hou*, “EDTA-mediated hydrothermal synthesis of NaEu(MoO4)2 microrugbies with tunable size andenhanced luminescence properties”, CrystEngComm, 13(15), 4921~4929(2011).
5.Qingming Shen, Xiaomei Zhao, Shiwei Zhou, Wenhua Hou*, and Jun-Jie Zhu*, “ZnO/CdSHierarchical Nanospheres for Photoelectrochemical Sensing of Cu2+”, J. Phys. Chem. C, 115, 17958–17964 (2011).
6.Lin Xu, Xiaoyan Yang, Zheng Zhai and Wenhua Hou*, “EDTA-mediated shape-selectivesynthesis of Bi2WO6 hierarchical selfassemblies with high visible-light-driven photocatalytic activities”, CrystEngComm, 13(15), 7267~7275(2011).

2010
1.Lin Xu, Chunliang Lu, Zihui Zhang, Xiaoyan Yang and Wenhua Hou*, “Various self-assembled three-dimensional hierarchical architectures of La2(MoO4)3: controlled synthesis, growth mechanisms, luminescence properties and adsorption activities”, Nanoscale, 2, 995~1005(2010).
2.Yuping Chen, Chunliang Lu, Lin Xu, Ying Ma, Wenhua Hou* and Jun-Jie Zhu*, “Single-crystalline orthorhombic molybdenum oxide nanobelts: synthesis and photocatalyticproperties”, CrystEngComm, 12, 3740~3747(2010).
3.Yuping Chen, Gang Yang, Zihui Zhang, Xiaoyan Yang, Wenhua Hou* and Jun-Jie Zhu*, “Polyaniline-intercalated layered vanadium oxide nanocomposites—One-pot hydrothermalsynthesis and application in lithium battery”, Nanoscale, 2, 2131~2138(2010).
4.Chunliang Lu, Qingming Shen, Xiaomei Zhao, Junjie Zhuc, Xuefeng Guo*, Wenhua Houa*, “Ag nanoparticles self-supported on Ag2V4O11 nanobelts: Novel nanocomposite for directelectron transfer of hemoglobin and detection of H2O2”, Sensors and Actuators B, 150, 200~205 (2010).
5.沈清明,闵乾昊,石建军,姜立萍,侯文华*,朱俊杰*,“超声辅助电化学合成形貌可控的三维铂催化剂”,化学学报,68(13), 1319~1324(2010).
6. 马莺,陈玉萍,徐林,翟正,杨晓燕,侯文华*,“一些层状纳米复合材料的制备和应用” ,无机化学学报,26(4), 551~559(2010).
7. 郭宪吉、侯文华、刘淑敏、李利民,“TiO2柱层状HTiNbO5的合成及其在环己酮气相Beckmann重排反应中的催化性能”,高等学校化学学报,31(6), 1206~1212(2010).

2009
1.Qingming Shen, Qianhao Min, Jianjun Shi, Liping Jiang, Jian-Rong Zhang, Wenhua Hou*, Jun-Jie Zhu*, Morphology-Controlled Synthesis of Palladium Nanostructures bySonoelectrochemical Method and Their Application in Direct Alcohol Fuel Cells, Journal of Physical Chemistry C, 113(4), 1267~1273(2009).
2.Yang Gang, Liu Yuge, Hou Wenhua*, Ji Hongmei, Li Yuhong, “Preparation and Electrochemical Studies of Layered PANI/HNb3O8 Nanocomposite”, Journal of Applied Polymer Science, 113(1), 78~86(2009).
3.Lu C. L., Lv J. G.., Xu L., Guo X. F.*, Hou W. H.*, Hu Y., Huang H., “ Crystalline nanotubesof gamma-AlOOH and gamma-Al2O3: hydrothermal synthesis, formation mechanism andcatalytic performance”, Nanotechnology, 20(21), 215604(2009).
4.Lu CL, Han L, Ding WP, Yang G, Guo XF*, Hou WH*, “In-Situ Controllable Synthesis of Ag Nanoparticles: Irradiation Induced Surface Segregation of Ag2V4O11 Nanobelt”, Journal ofNanoscience and Nanotechnology, 9(11), 6554-6559(2009).
5.Lin Xu, Jianmin Shen, Chunliang Lu, Yuping Chen, and Wenhua Hou*, “Self-AssembledThree-Dimensional Architectures of Y2(WO4)3:Eu: Controlled Synthesis, Growth Mechanism, and Shape-Dependent Luminescence Properties”, Crystal Growth & Design, 9(7), 3129~3136 (2009).
6.Lin Xu, Chunliang Lu, Jianmin Shen, Yuping Chen, Zihui Zhang and Wenhua Hou*, “New redphosphor with a high color purity: controlled synthesis of 3D architectures of YW2O6(OH)3 : Eu”, CrystEngComm, 11, 1323~1330(2009).
7. 冯晓苗、侯文华、朱俊杰, “导电高分子纳米材料的制备方法研究现状”, 化工进展,18 (12), 2173~2179(2009).

Before 2009
1. Shen, QM; Jiang, LP; Miao, JJ, Hou WH*, and Zhu JJ*, “Sonoelectrochemical synthesis of CdSe nanotubes” , Chem. Commun., (14), 1683-1685(2008).
2.Jian-Min Shen, Lin Xu, Yu-Ge Liu, Chun-Liang Lu, Wen-Hua Hou,* and Jun-Jie Zhu*, “WetChemistry Self-Seeded Surface-Deposition Process toward Amorphous Carbon Nanotubes andTheir Electrochemical Application”, Chem. Mater., 20, 3034~3041(2008).
3.Liu Yuge, Zhang Jingjing, Hou Wenhua*, Zhu Jun-Jie*, “A Pd/SBA-15 composite: synthesis, characterization and protein biosensing”, Nanotechnology, 19(13), 35707 (2008).
4.Yuge Liu, Chunliang Lu, Wenhua Hou*, Jun-Jie Zhu*, “Direct electron transfer of hemoglobinin layered alpha-zirconium phosphate with a high thermal stability”, Analytical Biochemistry,375(1), 27~34(2008).
5.Xiaomiao Feng, Haiping Huang, Lin Xu, Jun-Jie Zhu*, and Wenhua Hou*, “Shape-ControlledSynthesis of Polypyrrole/Ag Nanostructures in the Presence of Chitosan”, Journal ofNanoscience and Nanotechnology, 8(1), 443~447(2008).
6.Gang YANG, Wenhua HOU*, Xiaomiao FENG, Xuefan JIANG, Jin GUO, “ElectronicStructure of Oligoaniline Doped by Inorganic and Organic Acids”, International Journal ofQuantum Chemistry, 108, 1155~1163 (2008).
7.Wei Yan, Xiaomiao Feng, Xiaojun Chen, Wenhua Hou, Jun-Jie Zhu*, “A super highly sensitive glucose biosensor based on Au nanoparticles-AgCl@polyaniline hybrid material”,Biosensors& Bioelectronics, 23(7), 925~931(2008).
8.Yuge Liu, Xiaomiao Feng, Jianmin Shen, Jun-Jie Zhu* and Wenhua Hou*, “Fabrication of aNovel Glucose Biosensor Based on a Highly Electroactive Polystyrene/Polyaniline/AuNanocomposite”, J. Phys. Chem. B, 112, 9237~9242(2008).
9.Qingming Shen, Liping Jiang, Hui Zhang, Qianhao Min, Wenhua Hou*, Jun-Jie Zhu*, ThreeDimensional Dendritic Pt Nanostrutures: Sonoelectrochemical Synthesis and ElectrochemicalApplication, Journal of Physical Chemistry C,112(42), 16385~16392(2008).
10.郭宪吉*、侯文华*、刘淑敏,“以廉价的钛酸丁酯为钛源制备TiO2柱层状铌酸”,化学学报,16(15), 1781~1785(2008).
11. Gang Yang, Wenhua Hou,* Xiaomiao Feng, Lin Xu, Yuge Liu, Guan Wang, and WeipingDing, “Nanocomposites of Polyaniline and a Layered Inorganic Acid Host: Polymerization ofAniline in the Layers, Conformation, and Electrochemical Studies”, Adv. Funct. Mater., 17,401~412(2007).
12. Gang Yang,Wenhua Hou,* Xiaomiao Feng, Xuefan Jiang, and Jin Guo, “Density Functional Theoretical Studies on Polyaniline/HNb3O8 Layered Nanocomposites”, Adv. Funct. Mater., 17, 3521~3529(2007).
13.Xiaomiao Feng, Haiping Huang, Qingqing Ye, Jun-Jie Zhu*, and Wenhua Hou*,“Ag/polypyrrole core-shell nanostructures: Interface polymerization, characterization, andmodification by gold nanoparticles”, J. Phys. Chem. C, 111 (24), 8463~8468(2007).
14.Xiaomiao Feng, Zhengzong Sun,Wenhua Hou* and Jun-Jie Zhu*, “Synthesis of functionalpolypyrrole/prussian blue and polypyrrole/Ag composite microtubes by using areactivetemplate”, Nanotechnology, 18, 195603(2007).
15.Zhengzong Sun, Xiaomiao Feng, Wenhua Hou*, “Morphology-controlled Synthesis of α-FeOOH and its Derivatives”, Nanotechnology, 18, 455607(2007).
16.Yuge Liu, Qin Xu, Xiaomiao Feng, Jun-Jie Zhu*, Wenhua Hou*, “Immobilization ofhemoglobin on SBA-15 applied to the electrocatalytic reduction of H2O2”, Anal BioanalChem., 387, 1553~1559(2007).
17.Xianji Guo, Nianhua Xue, Shumin Liu, Xuefeng Guo, Weiping Ding, Wenhua Hou*, “One-step Synthesis and Structural Characterization of Mesoporous Vanadosilicates and Super-microporous Vanadosilicates”, Micropor. & Mesopor. Mater., 106, 246~255(2007).
18.冯晓苗,叶青青,侯文华*,朱俊杰*,“壳聚糖作用下一步法合成具有高电活性的聚苯胺核壳结构”,无机化学学报,23(9), 1572~1576(2007).
19.郭宪吉、李利民、刘淑敏、鲍改玲、侯文华, “并流淤浆混合法制备铜基甲醇合成催化剂及助剂Al2O3的作用研究”,燃料化学学报,35(3), 329~333(2007).
20.Xiaomiao Feng, Changjie Mao, Gang Yang, Wenhua Hou*, and Jun-Jie Zhu*,“Polyaniline/AuComposite Hollow Spheres: Synthesis, Characterization and Application to the Detection of Dopamine”, Langmuir, 22, 4384~4389(2006).
21.Xiaomiao Feng, Gang Yang, Qin Xu, Wenhua Hou*, Jun-Jie Zhu*, “Self-Assembly ofPolyaniline/Au Composites: From Nanotubes to Nanofibers”, Macromol. Rapid Commun., 27,31-36(2006).
22.Xiaomiao Feng, Yuge Liu, Chunliang Lu, Wenhua Hou* and Jun-Jie Zhu*, “One-Step Synthesisof AgCl/Polyaniline Core-Shell Composites with Enhanced Electroactivity”, Nanotech, 17,3578~3583(2006).
23.Xiaomiao Feng, Gang Yang, Yuge Liu, Wenhua Hou*, Jun-Jie Zhu*, “Synthesis of Polyaniline/MCM-41 Composite through Surface Polymerization of Aniline”, J. Appl. Polym. Sci., 101, 2088~2094(2006).
24.郭宪吉、侯文华*、陈静、许爱荣,“长链烷胺及手性钛的螯合物Ti((OC2H4)3N)(OCH(CH3)2)在层状V2O5中的插层行为”,化学学报, 64(17), 1770~1774(2006).
25.Xianji Guo*, Wenhua Hou, Gailing Bao, Qijie Yan, “Synthesis and characterization of porouschromia-pillared layered lanthanum niobic acid”, Solid State Ionics, 177 1293–1297(2006).
26.郭宪吉、鲍改玲、陆春良、侯文华、颜其洁,“高比表面钛铌复合氧化物在气相Beckmann重排反应中的催化应用”,天然气化工,31(1), 29~34(2006).
27.郭宪吉、许爱荣、侯文华,“B2O3/SiO2—钛铌酸催化剂上环己酮肟气相Beckmann重排”,石油化工,35(10), 943~947(2006).
28.Gang Yang, Yan Kong, Wenhua Hou,* and Qijie Yan, “Heating Behavior and Crystal GrowthMechanism in Microwave Field”, J. Phys. Chem. B, 109,1371-1379(2005).
29.Gang Yang, Guan Wang, and Wenhua Hou*, “Microwave Solid-State Synthesis of LiV3O8 asCathode Material for Lithium Batteries”, J. Phys. Chem. B, 109, 11186-11196(2005).
30.Gang Yang, Wenhua Hou*, Zhengzong Sun and Qijie Yan, “A novel inorganic–organicpolymer electrolyte with a high conductivity: insertion of poly(ethylene) oxide into LiV3O8 inone step”, J. Mater. Chem., 15, 1369–1374(2005).
31.Xianji Guo, Wenhua Hou*, Weiping Ding, Yining Fan, Qijie Yan, Yi Chen, “Synthesis of anovel super-microporous layered material and its catalytic application in the vapor-phaserearrangement of cyclohexanone oxime”, Micropor. & Mesopor. Mater., 80, 269~274(2005).
32.Huixuan Ma, Yan Kong, Wenhua Hou, and Qijie Yan*, “Synthesis of Hexagonal OrderedPorous Tin-doped Zirconium Oxide with High Surface Area”, Micropor. & Mesopor. Mater.,77, 241~243(2005).
33.Jun Geng, Wen-Hua Hou, Yi-Nong Lv, Jun-Jie Zhu,* and Hong-Yuan Chen, “One-DimensionalBiPO4 Nanorods and Two-Dimensional BiOCl Lamellae: Fast Low-Temperature SonochemicalSynthesis,Characterization, and Growth Mechanism”, Inorg. Chem., 44, 8503~8509(2005).
34.郭灿雄*、侯文华、颜其洁,“多孔性层状钙钛矿型镧铌酸催化剂的制备”,催化学报,26(9), 785~790(2005).
35.Yan Kong, Haiyang Zhu, Gang Yang, Xuefeng Guo, Wenhua Hou*, Qijie Yan*, Min Gu, andCheng Hu, “Investigation of the Structure of MCM-41 Samples with a High Copper Content”,Advanced Functional Materials, 14(8), 816~820(2004).
36.Xianji Guo, Wenhua Hou*, Weiping Ding, Yining Fan, Qijie Yan, Yi Chen, “Synthesis of novelinorganic-organic hybrid nanocomposites: Intercalation behaviour of titanium(IV) (triethanolaminato)-isopropoxide in a series of layered protonic metal oxides”, InorganicChemistry Communications, 7(8), 946~948(2004).
37.GUO Xian-Ji, HOU Wen-Hua*,KONG Yan, Ding Wei-Ping,Fan Yi-Ning, YAO Tian-Yang,YAN Qi-Jie, Chen Yi, “Preparation and Characterization of TiO2-pillared Layered HNb3O8”, Chinese Journal of Chemistry, 22(4), 340~343(2004).
38. 杨刚*、杨高文、徐桦、侯文华,“巯基笨并类浮选剂的浮选作用机理及其分子设计”,化学学报,62(2),153~159(2004)。
39.孔岩、陈嘉伊、郭宪吉、马会宣、侯文华、颜其洁*, “高铜含量中孔Cu-Si二元氧化物的合成和表征”, 高等学校化学学报, 25(2), 320~324(2004).
40.郭宪吉、侯文华*、孔岩、陆春良、姚天扬、颜其洁,“溶胶插入法制备高比表面TiO2柱层状铌酸”, 无机化学学报,19(3), 273~277(2003).
41.杨刚、侯文华*、郭宪吉、颜其洁、陈懿、陈静,“无机层状纳米材料与聚苯胺的复合研究”,无机化学学报,19(6), 561~568(2003).
42.郭宪吉、侯文华*、陆春良、颜其洁,“高比表面TiO2柱层状HlaNb2O7的制备和表征”,化学学报,61(12), 1976~1979(2003).
43.GUO Xianji, HOU Wenhua*, YAN Qijie & CHEN Yi,“Pillared layered transition metaloxides”, Chinese Science Bulletin, 48, 101~110(2003).
44.Xueguang Wang, Wenhua Hou*, Xiaoshu Wang, Qijie Yan*, “Preparation, characterizationand activity of novel silica-pillared layered titanoniobate supported copper catalysts for thedirect decomposition of NO”, Appl. Catal., B(Environmental), 35, 185~193(2002).
45.Xueguang Wang, Wenhua Hou*, Xuefeng Guo, Qijie Yan*, “Preparation and characterizationof layered molybdenum trioxide pillared with chromia”, Mater. Chem & Phys., 73, 13~18 (2002).
46.Xueguang Wang, Wenhua Hou*, Hai Wang, Qijie Yan*, “Effect of water on the performance of silica-pillared layered niobate-supported coppered oxide catalyst for NO reduction by CO”, Catalysis Communications, 3, 275~280(2002).
47.Xueguang Wang, Wenhua Hou, Hai Wang and Qijie Yan*, “A novel catalyst for NOreduction by CO”, Catalysis Letters, 82(3~4), 227~231(2002).
48.侯文华*、徐林、颜其洁、陈静,“具有超大通道结构的介孔氧化硅柱层状钛酸的合成和催化应用初探”,无机化学学报,18(7), 744~748(2002).
49.陈新、王海、侯文华*、颜其洁,“新型中孔氧化硅柱层状锰钛酸的合成”,无机化学学,18(6), 550~553(2002).
50.郭宪吉、侯文华*、颜其洁、陈懿, “层柱过渡金属氧化物”, 科学通报, 47(22), 1681~1689 (2002).
51.郭宪吉、陈新、侯文华*、姚天扬、颜其洁,“高比表面钛铌复合氧化物的制备”, 稀土学报, 20,special issue, 215~218(2002).
52.Zhaohui Zhong, Weiping Ding, Wenhua Hou*, Yi Chen, Xiaoyuan Chen, Yongyuan Zhu, Naiben Min, “Preparation, characterization, and ferroelectric properties of alkylamine-intercalated layered perovskite oxides(CnH2n+1NH3-Sr2Nb3O10, n=1~6)”, Chem. Mater., 13 (2), 538~542(2001).
53.HOU Wenhua, ZHONG Zhaohui, DING Weiping, CHEN Yi, CHEN Xiaoyuan, ZHU Yongyuan & MIN Naiben, “n-Pentylamine-intercalated layered perovskite-type oxide”, Chinese Science Bulletin, 46(8), 645~647(2001).
54.Xueguang Wang, Wenhua Hou*, and Qijie Yan*, “New silica-pillared layered titanoniobate supported Cu catalysts for the direct decomposition of NO”, Chem. Lett., 30(3), 188~189 (2001).
55.GAOQUAN SHI, FENGEN CHEN, SANXIE WU, YONGFA ZHU, XIAOYING HONG, WENHUA HOU, LIANG MING, “Polymerization of chlorofluorocarbon-22 and acetonitrile”,J. Appl. Polym. Sci., 81(1), 116~120(2001).
56.Xueguang Wang, Wenhua Hou*, Xuefeng Guo, and Qijie Yan*, “Preparation of porouschromia-pillared molybdenum trioxide”, Chem. Lett., 29(1), 52~53(2000).
57.Kohl SD, Toscano PJ, Hou WH, Rice JA, “Solid state 19F NMR investigation of hexafluorobenzene sorption to soil organic matter”, Environ. Sci. Technol., 34(1), 204~210(2000).
58.Lin Xu, Wenhua Hou*, Canxiong Guo, Qijie Yan, “First synthesis of zirconia-pillared layeredlanthanum niobate”, Chn. Chem. Lett., 11(2), 179~180(2000).
59.Gaoquan Shi*, Liang Ming, Sanxie Wu, Wenhua Hou, Lin Guo, “Carbonization of trichloroethanes with abhydrous potassium hydroxide”, J. Appl. Polym. Sci., 76(2), 185~189(2000).
60.钟肇晖、侯文华*、丁维平、陈懿、陈晓源、朱永元、闵乃本,“正戊烷插层的层状钙钛矿氧化物”,科学通报,45(21), 2286~2288(2000).
61.侯文华*、马军、颜其洁、陈懿、陈静,“均分散球形氧化铕超细微粒的制备和表征”,化学学报,58(6),683~687(2000)。
62. 汪学广、侯文华、颜其洁*,“氧化铬柱层状三氧化钼的合成”,化学学报,58(6), 688~691(2000)。
63.侯文华*、徐林、陈立刚、颜其洁、陈静,“采用不同方法制备CeO2超细粒子II. 冰冻脱水法和尿素水解法”,南京大学学报(自然科学),36(1), 100~103(2000).
64.徐林、侯文华*、郭灿雄、颜其洁,“氧化锆柱层状镧铌酸盐的制备”,南京大学学报(自然科学),36(1), 95~99(2000).
65.Hou Wenhua*, Chen Yashao, Guo Canxiong, Yan Qijie, Chen Yi and Chen Jing, “Synthesisand characterization of chromia-pillared layered tetratitanate”, Chn. J. Chem., 17(2),142~149(1999).
66.Hou Wenhua*, Ma Jun, Yan Qijie, Chen Jing, “Synthesis of nanosize europium oxide particlesby using W/O microemulsion”, Chn. J. Chem., 17(6), 690~692(1999).
67.侯文华*、陈亚芍、颜其洁、陈静,“氧化铬柱层状铌酸的合成和表征”,无机化学学 ,15(5),577~582(1999)。
68.侯文华*、汪学广、陈静、颜其洁, “具有不同层间距、比表面和孔径大小的氧化硅柱层状铌酸的制备”,高等学校化学学报,20(11),1793~1794(1999)。
69.Xu Lin, Hou Wenhua, Yan Qijie, “Preparation of mesoporous silica-pillared layeredtitanoniobate with a high interlayer distance and specific surface area”, 南京大学学报(自然科学),35(5), 631~633(1999).
70.侯文华、徐林、邱金恒、郭灿雄、陈立刚、颜其洁,“采用不同方法制备CeO2超细粒子I. 溶胶——凝胶法”,南京大学学报(自然科学),35(4), 486~490(1999).
71.Wenhua Hou, Yashao Chen, Canxiong Guo, and Qijie Yan, “Synthesis of porous chromia-pillared tetratitanate”, J. Solid State Chem., 136, 320~321(1998).
72 侯文华、王南平、郭灿雄、马军、颜其洁、傅献彩、陈静,“氧化硅柱层状铁钛酸盐的合成和表征”,化学学报,56, 160~165(1998).
73.Qi Liang, Kaidong Chen, Wenhua Hou, Qijie Yan*, “CO hydrogenation over nanometerspinel-type Co/Mn complex oxides prepared by sol-gel method”, Appl. Catal.(A: General), 166, 191~199(1998).
74.侯文华、王南平、郭灿雄、马军、颜其洁,“氧化硅柱层状镧钛酸盐的制备和表征”,无机化学学报, 13(2),186~190(1997)。
75.HOU Wen-Hua, CHEN Ya-Shao, GUO Can-Xiong, YAN Qi-Jie, CHEN Yi, “The firstsynthesis of a chromia-pillared layered niobate with porosity, acidity and highthermostability”, Chn. J. Chem., 15(5), 562~4(1997).
76.Yashao Chen, Wenhua Hou, Canxiong Guo, Qijie Yan, “Synthesis and characterization ofporous chromia-pillared layered titanoniobate”, J. Chem. Soc., Dalton Trans., 359~362 (1997).
77.Can-xiong Guo, Wen-hua Hou, Ming Guo, Qi-jie Yan and Yi Chen, “Synthesis of a newsolid acid: silica-pillared lanthanum niobate with a supergallery”, Chem. Commun., 801~802 (1997).
78.郭灿雄、侯文华、颜其洁,“新型多孔性氧化硅柱层状镧铌酸的制备”,(自然科学版),33,46(1997)。
79 郭灿雄、侯文华、颜其洁,“氧化硅柱镧铌酸层间纳米孔道的形成”,中国学术期刊文摘(科技快报),3(7),895~896(1997)。
80. WANG Nan-Ping, HOU Wen-Hua, MA Jun, YAN Qi-Jie, “Synthesis of silica-pillaredlayered lanthanum titanate with high thermal stability”, Chn. J. Chem., 14(2), 186~9(1996).
81.侯文华、王南平、颜其洁,“氧化硅柱层状铁钛酸盐的制备”,物理化学学报,12(10),933~6(1996).
82.Wenhua Hou, Qijie Yan, Bingcheng Peng, Xiancai Fu, “Synthesis and characterization ofalumina-pillared layered tetratitanates with different interlayer spacings”, J. Mater. Chem., 5(1), 109~114(1995).
83. Wenhua Hou, Qijie Yan, Yi Chen, Xiancai Fu, “Preparation and characterization of silica-pillared layered titanate”, Stud. Surf. Sci. Catal., 91, 799~805(1995).
84. Qijie Yan, Wenhua Hou, Yashao Chen, “Preparation of porous chromia-pillaredtitanoniobate”, J. Chem. Soc., Chem. Commun., (18), 1865-6(1995).
85.陈亚芍、侯文华、颜其洁,“氧化铝柱层状镧钛酸盐的制备”,无机化学学报,11(4),399~405(1995).
86. Wenhua Hou, Qijie Yan, Xiancai Fu, “Preparation of silica-pillared layered tetratitanate with a high surface area”, J. Chem. Soc., Chem. Commun., 1371~1372(1994).
87.侯文华、彭秉诚、颜其洁、傅献彩,“Al柱层状钛铌酸盐的制备”,化学学报,52(2),166~170(1994).
88.侯文华、颜其洁、傅献彩,“氧化铝柱层状铌酸盐的制备”,化学学报,52,872~876(1994).
89.侯文华、颜其洁、傅献彩,“高层间距氧化铝柱层状钛酸盐的制备和表征”,物理化学学报,10(2),100~102(1994).
90.侯文华、颜其洁、彭秉诚、傅献彩,“具有不同层间距的氧化铝柱层状钛铌酸盐的制备”,物理化学学报,10(4),289~292(1994).
91.侯文华、颜其洁、傅献彩,“氧化硅柱层状钛酸盐的制备”,高等学校化学学报,15 (4),490~491(1994).
92. Wenhua Hou, Qijie Yan, Bingcheng Peng, Xiancai Fu, “Preparation of alumina-pillaredlayered tetratitanates with different interlayer spacings”, Chn. J. Chem., 12(6), 557~561 (1994).
93.侯文华、颜其洁,“杂多酸及其盐的热稳定性和酸催化性能研究”,南京大学学报,30(2),257~262(1994).
94.邵孝侯、侯文华、邢光熹,“连续提取法区分土壤重金属元素形态的研究及其应用”,土壤学进展,22(3),40~46(1994).
95.邵孝侯、侯文华、邢光熹,“用连续提取法研究土壤对镉和锌的吸持特性”,土壤,26(2),77~79(1994).
96.邵孝侯、邢光熹、侯文华,“土壤固相不同组分对镉、锌吸持的研究”,环境化学,13(4),340~345(1994).
97.Wenhua Hou, Bingcheng Peng, Qijie Yan, Xiancai Fu, Gaoquan Shi, “The first silica-pillared layered niobate”, J. Chem. Soc., Chem. Commun., (3), 253-4(1993).
98.Wenhua Hou, Jun Ma, Qijie Yan, Xiancai Fu, “Highly thermostable, porous,titanoniobate pillared by silica”, J. Chem. Soc., Chem. Commun., (14), 1144-5(1993).
99. 侯文华、颜其洁、傅献彩,“SiO2为柱的层状钛铌酸盐的合成”,科学通报,38(14), 295-7(1993).
100. 石高全、薛奇、王国祥、侯文华,“NaX 和ZSM-5分子筛在聚乙二醇中的电化学行为”,科学通报,38(7),617-9(1993).
101. G. Shi, G. Xue, W. Hou, J. Dong, “Electrochemical behavior of MOR zeolite in poly (ethylene oxide) oligomer”, J. Electroanal. Chem., 344(1-2), 363-6(1993).
102. Wenhua Hou, Bingcheng Peng, Qijie Yan, Xiancai Fu, “Pillaring of layered niobate bypolyoxo cations of aluminum”, Chn. Chem. Lett., 3(9), 763-4(1992).
103. 侯文华、颜其洁,“12-钨钼硅系杂多酸的热稳定性和酸催化性能的研究”,无机化学学报,7(3), 366-9(1991).
104. Xing Guang-xi, Hou Wen-hua, Yang Wen-xing, “Ratios of closely related elements in soiland their implications”, Pedosphere, 1(4), 333-43(1991).
105. X. Xian、邵孝侯、侯文华,“pH对污染土壤中Cd、Zn和Pb的化学形态及植物有效性的影响”,土壤学进展,19(3), 34~37(1991).
106. 侯文华、颜其洁,“负载杂多酸催化剂H4SiMo12-nWnO40/SiO2的表征”,分子催化,4(1) , 13-20(1990). 



课程名称、上课时间地点


主讲化院大三本科生《物理化学》
物理化学基础课程国家级教学团队带头人


教学大纲、考试要求




教学资源(上课讲义、参考资料等)


编写教材:
1. 傅献彩、沈文霞、姚天扬、侯文华,《物理化学》(第5版,上、下册),高等教育出版社,2005年。
2. 孙德坤、沈文霞、姚天扬、侯文华,《物理化学学习指导》,高等教育出版社,2007年。
3. 侯文华、淳远、姚天扬,《《物理化学习题集》,高等教育出版社,2009年。
 
教学论文
1. 陈静、侯文华*,“高分子化学教学中有机化学知识的融通实践”,大学化学,28(3):19-23(2013).
2. 侯文华*、姚天扬,“物理化学课程教学探索与实践”,中国大学教学,7, 38-40(2012).
3. 侯文华*、陈静,“精馏过程中的一些物理化学知识及其应用进展”,化学教育,33(11), 1-5(2012).
4. 王元星、侯文华*,“化学热力学的建立与发展概略”,大学化学,26(4), 87-92(2011).
5. 侯文华*、陈静,“物理化学原理在简单蒸馏实验中的应用”,化学教育,32(4), 70-71(2011).
6. 陈静、侯文华*,“1H NMR化学位移的正确理解和规范表述”,化学教与学,303(3), 5-6(2011).
7. 郭琳、侯文华、王喜章、彭路明、吴强,“大学基础化学课程研究型教学方法探索”,湖南师范大学自然科学学报,34(10),75-76(2011).
8. 陈静、张荣、侯文华,“《有机化学》课程教学中与科研融通的实践”,湖南师范大学自然科学学报,34(10),127-129(2011).
9. 陈静、侯文华*,“有机化学教学中培养学生创新意识和创新精神的一些做法”,大学化学化工基础课程报告论坛论文集2010,高等教育出版社(ISBN 978-7-89469-810-0),2011。
10. 陈静、侯文华,“《波谱学》课程的教学实践与体会”,第六届全国大学化学化工基础课程报告论坛,2011年10月,天津。
11. 侯文华、丁维平、王志林,“大力推进通识教育实施全面化学教育与人才培养——南京大学化学专业本科人才培养方案和教学计划的修订”,大学化学,25(3), 7-9(2010).
12. 侯文华,陈静,“物理化学原理在有机化学教与学中的应用(四):“氢化热与有机分子稳定性的关系”,化学教与学,278(2),4-6(2010).
13. 侯文华,陈静,“物理化学原理在有机化学教与学中的应用(三):“燃烧焓与有机分子稳定性的关系”,化学教与学,277(1), 6-8(2010).
14. 侯文华、陈静,“物理化学原理在有机化学教与学中的应用(二):烷烃卤代反应的活性和选择性与C-H键能的关系”,化学教与学,274(22),16-18(2009).
15. 侯文华、陈静,“物理化学原理在有机化学教与学中的应用(一):动力学控制和热力学控制”,化学教与学,269(17), 6-8(2009).
16. 侯文华,陈静,“对化学类专业研究生教材建设的一些感想和看法”,21世纪化学类专业研究生教育成果与展望(华东理工大学出版社,郑兰荪,张玉奎主编,2009年7月),p.269。
17. 陈静,侯文华,“硕士研究生波谱学课程教学体会”,21世纪化学类专业研究生教育成果与展望(华东理工大学出版社,郑兰荪,张玉奎主编,2009年7月),p.148。
18. 侯文华、陈静,“大学化学课堂教学中应该注意的一些问题”,大学化学,24(3),22-25(2009).
19. 侯文华,“化学动力学的建立与发展概略”,大学化学,22(3), 28-36(2007).
20. 陈静,侯文华*,“氨基酸的等电点”,首届大学化学化工基础课报告论坛论文摘要集,2006年4月,南京。
21. 侯文华,“化学动力学的建立和发展”,全国高师第十五届物理化学教学研讨会论文集,2006年8月,云南大理。




课题组风采


















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