澳门新甫京娱乐娱城平台
澳门新甫京娱乐娱城平台
 

张洁

研究员 博导 优青

Email: jz10@pku.edu.cn
Tel:010-62754965
课题组网页:/page/wanxh/zncy/js/922435.htm

教育及工作经历

  • 2022至今, 澳门新甫京娱乐娱城平台, 澳门新甫京娱乐娱城平台, 研究员
  • 2018.4~6, 香港科技大学访问学者
  • 2015.1~2, 日本北海道大学访问学者
  • 2012~2022, 澳门新甫京娱乐娱城平台, 澳门新甫京娱乐娱城平台, 副教授
  • 2010~2012, 澳门新甫京娱乐娱城平台, 澳门新甫京娱乐娱城平台, 讲师
  • 2006~2009, 美国Lehigh University, 博士后
  • 2001~2006, 澳门新甫京娱乐娱城平台, 高分子化学与物理, 博士
  • 1997~2001, 大连理工大学, 高分子科学与工艺, 学士

 

获得奖励

  • 2021 澳门新甫京娱乐娱城平台优秀德育奖
  • 2019 澳门新甫京娱乐娱城平台教学优秀奖
  • 2017 澳门新甫京娱乐娱城平台博雅青年学者
  • 2017 学院青年教师教学基本功比赛二等奖、优秀教案奖
  • 2016 绿叶生物医药杰出青年学者奖
  • 2014 国家自然科学基金委优秀青年基金

 

主讲课程:

  • 《有机化学B》(城环、环科、地空等学院• 本科生)
  • 《手性材料》(学院 • 研究生本科生)

 

研究领域

  1. 手性聚合物的可控合成和自组装;
  2. 超分子手性杂化材料的构筑及功能化

 

代表性论文

  1. S. L. Cai, Y. H. Huang, S. Y. Xie, S. Wang, Y. Guan, X. H. Wan* and Jie Zhang*. “2D Hexagonal Assemblies of Amphiphilic Double Helical Poly(phenylacetylene) Homopolymers with Enhanced Circularly Polarized Luminescence and Chiral Self-Sorting” Angew. Chem. Int. Ed. 2022, 61, e202214293;
  2. S. Wang, X. Y. Guan, S. L. Cai, G. Shi, J. Zhang*, X. H. Wan*. “Self-Reporting Activated Ester-Amine Reaction for Enantioselective Multi-Channel Visual Detection of Chiral Amines” Angew. Chem. Int. Ed., 2022, 61, e202202268.
  3. S. L. Cai, J. X. Chen, S. Wang, J. Zhang*, X. H. Wan*. “Allostery‐Mimicking Self‐assembly of Helical Poly(phenyacetylene) Block Copolymers and the Chirality Transfer” Angew. Chem. Int. Ed., 2021, 60, 9772-9778.
  4. S. Wang, D. P. Hu, X. Y. Guan, S. L. Cai, G. Shi, Z. G. Shuai, J. Zhang*, Q. Peng*, X. H. Wan*. “Brightening up Circularly Polarized Luminescence of Monosubstituted Polyacetylene by Conformation Control: Mechanism, Switching, and Sensing” Angew. Chem. Int. Ed., 2021, 60, 21918-21926.
  5. X. Y. Guan, S. Wang, G. Shi, J. Zhang*, X. H. Wan*. “Thermoswitching of Helical Inversion of Dynamic Polyphenylacetylenes through cis-trans Isomerization of Amide Pendants” Macromolecules, 2021, 54, 4592-4600.
  6. J. X. Chen, S. L. Cai, R. Wang, S. Wang, J. Zhang*, X. H. Wan*. “Polymerization-Induced Self-Assembly of Conjugated Block Copoly(phenylacetylene)s” Macromolecules, 2020, 53, 1638-1644.
  7. M. Y. Zeng, J. Y. Tan, K. Chen, D. J. Zang, Y. Yang, J. Zhang*, Y. G. Wei* “Guest Controlled Pillar[5]arene and Polyoxometalate Based Two-Dimensional Nanostructures toward Reversible Iodine Capture” ACS Appl. Mater. Interfaces2019, 11, 8537-8544.
  8. Y. Zhou, J. Y. Tan, D. D. Chong, X. H. Wan*, J. Zhang*. “Rapid Near‐Infrared Light Responsive Shape Memory Polymer Hybrids and Novel Chiral Actuators Based on Photothermal W18O49 Nanowires” Adv. Funct. Mater., 2019, 9, 1901202.
  9. R. Wang, X. H. Wan*, J. Zhang*. “Multi-stimuli-responsive induced chirality of polyoxometalates in natural polysaccharide hydrogels” Chem. Commun., 2019, 55, 4711-4714.
  10. R. Wang, J. X. Cui, X. H. Wan*, J. Zhang* “Controlled chiral arrangement of silver nanoparticles in supramolecular gels modulated by the cooling rate.” Chem. Commun., 2019, 55, 4949-4952.
  11. N. Shi, R. Wang, X. Wang, J. Y. Tan, Y. Guan, Li, Z. B., X. H. Wan*, J. Zhang* “Surface plasmon resonance-assisted circularly polarized luminescent hybrid assemblies of Eu-containing polyoxometalates.” Chem. Commun., 2019, 55, 1136-1139.
  12. J. Y. Tan, D. D. Chong, Y. Zhou, R. Wang, X. H. Wan*, J. Zhang* “Morphology Evolution of Stimuli-Responsive Triblock Copolymer Modulated by Polyoxometalates” Langmuir, 2018, 34, 8975-8982.
  13. J. X. Chen, S. Wang, G. Shi, R. Wang, S. L. Cai, J. Zhang*, X. H. Wan* “Amphiphilic Rod–Rod Block Copolymers Based on Phenylacetylene and 3,5-Disubstituted PhenylacetyleneSynthesis,Helical Conformation,and Self-Assembly” Macromolecules, 2018, 51, 7500-7508.
  14. D. D. Chong, J. Y. Tan, J. L. Zhang, Y. Zhou, X. H. Wan*, J. Zhang* “Dual electrical switching permeability of vesicles via redox-responsive self-assembly of amphiphilic block copolymers and polyoxometalates” Chem. Commun., 2018, 54, 7838-7841.
  15. H. B. Wei, J. L. Zhang, N. Shi, J. Zhang*, X. H. Wan*. A Recyclable Polyoxometalate-based Supramolecular Chemosensor for Efficient Detection of Carbon Dioxide” Chem. Sci.20156, 7201-7205.
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