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教授
吴宗铨
发布时间:2018-11-17    阅读次数:87
姓 名:
吴宗铨
职 称:
中组部青年千人、国家基金委优青、教授、博士生导师
职 务:
 
所属系:
高分子材料与工程系
邮 箱:
zqwu@hfut.edu.cn
电 话:
0551-62902931

个人简历

主要学习和工作经历:
1997年9月-2001年7月
安徽师范大学化学与材料科学学院,学士学位。
2001年9月-2006年7月
中国科学院上海有机化学研究所,生命有机化学国家重点实验室,硕博连读研究生,理学博士。导师:蒋锡夔院士,黎占亭研究员。
2006年10月-2008年9月
日本名古屋大学,日本学术振兴会(JSPS)外国人特别研究员博士后、日本科学技术振兴机构 (JST/ERATO)研究员(博士后)。
2006年10月-2008年9月
日本名古屋大学,日本21世纪优才中心计划(G-COE)研究员博士后。
2010年1月至2010年11月
美国德克萨斯大学奥斯汀分校化学与生物化学系,博士后
2011年1月至今:
合肥工业大学化学与化工学院高分子科学与工程系,合肥工业大学“黄山学者”特聘教授、博士生导师;2011年入选中组部第一批“青年千人计划”。 2016年入选国家自然科学基金委优秀青年科学基金项目。担任J. Am. Chem. Soc., Macromolecules (top 150 reviewers of 2015), ACS Macro Letts. Chem. Commun. 等国际著名期刊审稿人;《中国化学快报》第一届青年编委。

主要研究领域、方向

主要研究领域:手性高分子、共轭高分子、超分子组装
招生方向:
硕士研究生:材料学、高分子化学与物理、材料工程
博士研究生:材料学、生物质化学工程、材料化学工程
主讲本科生《高分子化学(双语)》、《高分子材料科学进展》、《专业英语》等课程;
主讲硕士研究生《高分子科学新进展》、《材料科学进展》;
主讲博士研究生《功能材料学》等课程。

研究成果(代表性成果)

代表性研究成果:
1、螺旋手性高分子合成新方法
通过设计合成新的炔-Pd(II)配合物引发体系,建立了立构规整螺旋聚异腈活性可控聚合的新方法;
2、发展新结构的螺旋手性高分子
发展了新的螺旋结构的聚联烯,实现了联烯与功能性噻吩单体共聚,合成了一系列刺激响应性的嵌段共聚物;
3、新型有机白光高分子材料
建立了一步合成共轭高分子与螺旋高分子嵌段共聚物活性可控聚合的新方法,发现了溶剂诱导共轭高分子自组装形貌调控其发光性质的方法,发展了一系列新型的有机白光高分子材料。
作为主要完成人在J. Am. Chem. Soc., Macromolecules, Chem. Commun.等期刊上发表研究论文60余篇,他引1000余次。

目前承担科研项目

主持的科研项目:
1、国家自然科学基金委优秀青年科学基金项目:手性螺旋高分子可控合成及应用,项目编号:21622402。起止年月:2017.01-2019.12;
2、国家自然科学基金面上项目:钯配合物制备光学活性聚异腈及应用于催化不对称反应,项目编号:21574036。起止年月:2016.01-2019.12;
3、国家自然科学基金委面上项目:基于羧脒盐桥作用的超分子聚合物合成及性质研究,项目编号:21104015。起止年月:2012.01-2015.12;
4、国家自然科学基金委青年基金:刚性二嵌段共聚物的合成、手性诱导及自组装研究, 项目编号:21172050。起止年月:2012.01-2014.12;
5、中织部国家“青年千人计划”
6、江苏省常州市“龙城英才”计划特别推荐项目
7、合肥工业大学优秀青年人才培育计划B
8、合肥工业大学创新计划重点培育项目
9、合肥工业大学“黄山学者”引进人才启动基金
10、超分子结构与材料国家重点实验室开放课题
11、江苏省自然科学基金面上项目(依托合肥工业大学常州研究院):新型棒-棒二嵌段共聚物的合成及自组装研究,项目编号:BK2011237;
12、2013年安徽省高等教育振兴计划“重大教学改革研究项目”,吴宗铨、唐龙祥 

获奖及专利情况

获奖及授权专利:
获奖:上海市自然科学一等奖(2016)
授权专利:
(1) 吴宗铨,薛雅欣,刘娜,贺晓悦,高龙美,田发银,一种钯催化剂、其制备方法及其用途,申请时间:2012.12.26,中国,授权时间:2014.10.08,专利号:ZL 2012 1 0571889.X;
(2) 刘娜,吴宗铨,祁呈刚,一种两亲性共轭二嵌段共聚物及其制备方法,申请日期:2012.11.16,中国,CN 203012750 A,授权日期:2015.02.04,专利号:ZL 2012 1 0464254.X。

著作论文(代表作)

代表论文:
2013年以后的研究成果:
(1) Chunhua Liu,* Yan-Xin Mi, Rong-Hua Wang, Zhi-Qiang Jiang, Xiao-Yan Zhang, Na Liu, Jun Yin, and Zong-Quan Wu,* Facile synthesis of well-defined ABC miktoarm star terpolymers bearing poly(ε-caprolactone), polystyrene and stereoregular helical poly(phenyl isocyanide) blocks, Polym. Chem. 2016, 7, 2447–2451.
(2) Zhi-Peng Yu, Cui-Hong Ma, Qian Wang, Na Liu,* Jun Yin, and Zong-Quan Wu,* Polyallene-block-Polythiophene-block-Polyallene Copolymers: One-pot Synthesis, Helical Assembly and Multiresponsiveness, Macromolecules 2016, 49 (4), 1180–1190.
(3) Ya-Guang He, Sheng-Yu Shi, Na Liu, Yun-Sheng Ding, Jun Yin,* Zong-Quan Wu,* Tetraphenylethene-Functionalized Conjugated Helical Poly(phenyl isocyanide) with Tunable Light Emission, Assembly Morphology, and Specific Applications, Macromolecules 2016, 49 (1), 48–58.
(4) Ming Su,† Na Liu,† Qian Wang, Huiqing Wang, Jun Yin, and Zong-Quan Wu*, Facile Synthesis of Poly(phenyleneethynylene)-block-Polyisocyanide Copolymers via Two Mechanistically Distinct, Sequential Living Polymerizations Using a Single Catalyst, Macromolecules 2016, 49 (1), 110–119. (†Contributed equally)
(5) Jia-Li Chen, Li Yang, Qian Wang, Zhi-Qiang Jiang, Na Liu,* Jun Yin, Yunsheng Ding, and Zong-Quan Wu*, Helix-Sense-Selective and Enantiomer-Selective Living Polymerization of Phenyl Isocyanide Induced by Reusable Chiral Lactide Using Achiral Palladium Initiator, Macromolecules 2015, 48, 7737–7746.
(6) Ming Su, Sheng-Yu Shi, Qian Wang, Na Liu,* Jun Yin, Chunhua Liu, Yunsheng Ding and Zong-Quan Wu*, Multiresponsive of highly water-soluble poly(3-hexylthiophene)-block-poly(phenylisocyanide) block copolymers, Polym. Chem. 2015, 6, 6519–6528.
(7) Yan-Yu Hu, Ming Su, Cui-Hong Ma, Zhipeng Yu, Na Liu, Jun Yin, Yunsheng Ding, and Zong-Quan Wu*, Multiple Stimuli-Responsive and White-Light Emission of One-Pot Synthesized Block Copolymers Containing Poly(3-hexylthiophene) and Poly(triethyl glycol allene) Segments, Macromolecules 2015, 48 (15), 5204–5212.
(8) Chang-Wei Liu, Ming Su, Xue-Liang Li, Teng Xue, Na Liu, Jun Yin, Yuan-Yuan Zhu,* and Zong-Quan Wu*, Multi-stimuli-responsive Chiral Organogels Based on Peptide Derivatives, Soft Matter 2015, 11, 5727–5737.
(9) Sheng-Yu Shi, Ya-Guang He, Wei-Wei Chen, Na Liu, Yuan-Yuan Zhu, Yun-Sheng Ding, Jun Yin,* and Zong-Quan Wu*, Polypeptide-b-Poly(Phenyl Isocyanide) Hybrid Rod-Rod Copolymers: One-Pot Synthesis, Self-Assembly, and Cell Imaging, Macromol. Rapid Commun. 2015, 36 (16), 1511–1520.
(10) Jia-Li Chen, Ming Su, Zhi-Qiang Jiang, Na Liu, Jun Yin, Yuan-Yuan Zhu and Zong-Quan Wu*, Facile Synthesis of Stereoregular Helical Poly(phenyl isocyanide)s and Poly(phenyl isocyanide)-block-poly(L-lactic acid) Copolymers Using Alkylethynylpalladium(II) Complexes as Initiators, Polym. Chem. 2015, 6, 4784–4793.
(11) Wei Li, Ya-Guang He, Sheng-Yu Shi, Na Liu, Yuan-Yuan Zhu, Yun-Sheng Ding, Jun Yin,* and Zong-Quan Wu,* Fabrication of Multi-Charges Generable Poly(phenyl isocyanide)-block-Poly(3-hexylthiophene) Rod-Rod Conjugated Copolymer, Polym. Chem. 2015, 6, 2348–2355.
(12) Zhi-Qiang Jiang, Ya-Xin Xue, Jia-Li Chen, Zhi-Peng Yu, Na Liu, Jun Yin, Yuan-Yuan Zhu, and Zong-Quan Wu,* One-Pot Synthesis of Brush Copolymers Bearing Stereoregular Helical Polyisocyanides as Side Chains through Tandem Catalysis, Macromolecules 2015, 48, 81–89.
(13) Yong-xin Yan, Ting-ting Yin, Deng-feng Liu, Na Liu, Jun Yin, Yuan-yuan Zhu,* Zong-quan Wu,* Highly Selective Visual Detection of Co2+ by Poly(3-hexylthiophene)-b-Poly(quinoxaline-2,3-diyl) Conjugated Copolymer, Acta Polym. Sin. 2015, 3, 319–325.
(14) Yuan-Yuan Zhu, Ting-Ting Yin, Xue-Liang Li, Ming Su, Ya-Xin Xue, Zhi-Peng Yu, Na Liu,* Jun Yin and Zong-Quan Wu,* Synthesis and Chiroptical Properties of Helical Polyallenes Bearing Chiral Amide Pendants, Macromolecules 2014, 47, 7021–7029.
(15) Yuan-Yuan Zhu, Ting-Ting Yin, Ji Yin, Na Liu, Zhipeng Yu, Yan-Wu Zhu, Yunsheng Ding, Jun Yin* and Zong-Quan Wu,* Poly(3-hexylthiophene)-block-Poly(5,8-di-p-tolylquinoxaline-2,3-diyl) Conjugated Rod-Rod Copolymers: One Pot Synthesis, Self-Assembly and Highly Selective Sensing for Cobalt, RSC Adv. 2014, 4, 40241−40250.
(16) Ya-Xin Xue, Jia-Li Chen, Zhi-Qiang Jiang, Zhipeng Yu, Na Liu, Jun Yin, Yuan-Yuan Zhu and Zong-Quan Wu,* Living polymerization of arylisocyanide initiated by the phenylethynyl palladium (II) complex, Polym. Chem. 2014, 5 (22), 6435−6438.
(17) Long-Mei Gao, Yan-Yu Hu, Zhi-Peng Yu, Na Liu, Jun Yin, Yuan-Yuan Zhu, Yunsheng Ding, and Zong-Quan Wu,* Facile Preparation of Regioregular Poly(3-hexylthiophene) and Its Block Copolymers with π-Allylnickel Complex as External Initiator, Macromolecules 2014, 47, 5010−5018. Highlighted in Synfacts by Prof. T. M. Swager at MIT.
(18) Ya-Xin Xue, Yuan-Yuan Zhu, Long-Mei Gao, Xiao-Yue He, Na Liu, Wu-Yi Zhang, Jun Yin, Yunsheng Ding, Hongping Zhou, and Zong-Quan Wu,* Air-Stable (Phenylbuta-1,3-diynyl)palladium(II) Complexes: Highly Active Initiators for Living Polymerization of Isocyanides, J. Am. Chem. Soc. 2014, 136 (12), 4706–4713. Highlighted in Synfacts by Prof. T. M. Swager at MIT.
(19) Na Liu, Cheng-Gang Qi, Ying Wang, Deng-Feng Liu, Jun Yin, Yuan-Yuan Zhu and Zong-Quan Wu,* Solvent Induced White-Light Emission of Amphiphilic Rod-Rod Poly(3-triethylene glycol thiophene)-block-poly(phenyl isocyanide) Copolymer. Macromolecules 2013, 46 (19), 7753–7758.
(20) Zong-Quan Wu,* Yu Chen, Ying Wang, Xiao-Yue He, Yun-Sheng Ding and Na Liu, One pot synthesis of poly(3-hexylythiophene)-block-poly(hexadecyloxylallene) by sequential monomer addition, Chem. Commun. 2013, 49 (73), 8069–8071.
(21) Zong-Quan Wu,* Deng-Feng Liu, Ying Wang, Na Liu, Jun Yin, Yuan-Yuan Zhu, Long-Zhen Qiu and Yun-Sheng Ding, One pot synthesis of poly(3-hexylthiophene)-b-poly(quinoxaline-2,3-diyl) rod-rod diblock copolymer and its tunable light emission properties, Polym. Chem. 2013, 4, 4588–4595. (Hot article, top 10 most read polymer chemistry articles in Q3 2013)
(22) Zong-Quan Wu,* Cheng-Gang Qi, Na Liu, Ying Wang, Jun Yin,* Yuan-Yuan Zhu, Long-Zhen Qiu and Hong-Bo Lu, One-pot synthesis of conjugated poly(3-hexylthiophene)-b-poly(phenyl isocyanide) hybrid rod–rod block copolymers and its self-assembling properties. J. Polym. Sci., Part A: Polym. Chem. 2013, 51, 2939–2947.
(23) Fa-Yin Tian, Liu Na,* Yuan-Yuan Zhu, Yin Jun, Chen Yu and Zong-Quan Wu,* Synthesis of High Molecular Weight Poly(carbazole)s via Click Polymerization. Acta Polym. Sin. 2013, 12, 1553–1560.
独立工作以前的代表性研究成果:
(24) Zong-Quan Wu, Jonathan D. Radcliffe, Robert J. Ono, Zheng Chen, Zicheng Li and Christopher W. Bielawski,* Synthesis of Conjugated Diblock Copolymers: Two Mechanistically Distinct, Sequential Living Polymerizations Using a Single Catalyst. Polym. Chem. 2012, 3, 874–881 (Front cover).
(25) Zong-Quan Wu, Robert J. Ono, Zheng Chen, Zicheng Li and Christopher W. Bielawski,* Polythiophene-b-Poly(g-Benzyl L-Glutamate): Synthesis and Study of a New Class of Rod–Rod Block Copolymers. Polym. Chem. 2011, 2, 300–302. (Hot Article).
(26) Zong-Quan Wu, Robert J. Ono, Zheng Chen and Christopher W. Bielawski,* Synthesis of Poly(3-alkylthiophene)–block–Poly(arylisocyanide): Two Mechanistically Distinct, Sequential Living Polymerizations Using a Single Catalyst. J. Am. Chem. Soc., 2010, 132, 14000–14001. (Hights of DOE, USA).
(27) Zong-Quan Wu, Yoshio Furusho,* Hidekazu Yamada and Eiji Yashima,* A hetero-stranded double helix composed of m-diethynylbenzene-based complementary molecular strands stabilized by amidinium-carboxylate salt bridges. Chem. Commun. 2010, 46, 8962–8964.
(28) Zong-Quan Wu, Kanji Nagai, Motonori Banno, Kento Okoshi, Kiyotaka Onitsuka and Eiji Yashima,* Enantiomer-Selective and Helix-Sense-Selective Block Copolymerization of Isocyanide Enantiomers Initiated by Single-Handed Helical Poly(phenyl isocyanide)s. J. Am. Chem. Soc., 2009, 131, 6708–6718.
(29) Zong-Quan Wu, Chang-Zhi Li, Dai-Jun Feng, Xi-Kui Jiang and Zhan-Ting Li,* Hydrogen Bonding-Driven Pyridine and Imidazole-Incorporated C60 Foldamers Receptors For Efficient Complexation of Zinc Porphyrins. Tetrahedron 2006, 62, 11054–11062. Nov. 27 2006
(30) Zong-Quan Wu, Xue-Bin Shao, Chuang Li, Jun-Li Hou, Kui Wang, Xi-Kui Jiang and Zhan-Ting Li,* Hydrogen Bonding-Driven Preorganized Zinc Porphyrin Receptors for Efficient Complexation of C60, C70 and C60 Derivatives. J. Am. Chem. Soc., 2005, 127, 17460–17468.  


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