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雷忠利
  • 职  称:教授(博士生导师)
  • 毕业学校:2002年7月 吉林大学(博士); 2009年3月-2010年4月 美国Johns Hopkins University (博士后)
  • 电  话:029-81530812
  • 电子邮箱:zhllei@snnu.edu.cn
  • 研究方向:功能高分子材料

个人简介

2002年7月于吉林大学获得博士学位;2009年3月-2010年4月于美国Johns Hopkins University做博士后研究,主要进行生物医药高分子材料的合成及其药物控释方面的研究。

长期以来从事ATRP理论和应用的研究,在ATRP合成生物材料以及材料表面生物功能化修饰方面开展了广泛的研究,取得了一定的研究成果。对多种单体的ATRP进行了系统的研究,积累了丰富的经验,促进了活性可控聚合在高分子载体材料方面的应用。同时,在太阳能电池材料研究方面也取得了一系列具有突破性成果。近年来承担了国家自然科学基金、西安市科技局项目等多项,与企业合作项目多项。在国际重要学术期刊如Adv. Energy Mater., J. Mater. Chem. A, J. Agric. Food Chem., J. Biotechnol.以及J. Nanopart. Res.等上发表SCI论文30余篇,授权专利10余项。


代表性成果

1.A High-Performance D–A Copolymer Based on Dithieno[3, 2-b:2′, 3′-d]Pyridin-5(4H)-One Unit Compatible with Fullerene and Non-fullerene Acceptors in Solar Cells,Advanced Energy Materials,2017, 7, 1602509.

2.Synthesis of stimuli-responsive support material for pectinase immobilization and investigation of its controllable tailoring of enzymatic activity,Biochemical Engineering Journal,2017, 121, 188-195.

3.PLA–PEG-grafted hollow magnetic silica microspheres as the carrier of iodinated contrast media,Journal of Applied Polymer Science,2017, 133, 44914.

4.Synthesis of the light/pH responsive polymer for immobilization of α-amylase,Materials Science and Engineering C,2017, 71, 75-83.

5.Synthesis of supramolecular polymer based on noncovalent “host–guest” inclusion complexation and its reversible self-assembly.New Journal of Chemistry,2016, 40, 6825-6833.

6.Synthesis of pH-responsive β-CD-based star polymer and impact of its self-assembly behavior on pectinase activity.Biotechnology and Applied Biochemistry,2016, 64, 1-8.

7.Lock-up function of fluorine enhances photovoltaic performance of polythiophene,Science China Chemistry,2016, 60, 251-256.

8.Preparation and characterization of hollow magnetic compositenanoparticles for immobilized pectinase,Surface & Coatings Technology,2015, 271, 2-7.

9.Synthesis of a smart Janus-like supramolecular polymer based on the host–guest chemistry and its self-assembly,Journal of Materials Chemistry A,2015, 3, 17098-17105.

10. Redox-responsive supramolecular polymer based on β-cyclodextrin and ferrocene-decorated main chain of PAA, Journal of Materials Research, 2015, 30, 3201-3210.  

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