Pan Xiangqiang

作者: 发布时间:2020-12-22 浏览次数:3622

    

Name:Xiangqiang Pan

Title:Professor


Department: Materials Science and Engineering




Contacts:

912#1105, Soochow University, 199 Ren-ai Rd., Suzhou, 215123, P. R. China  

Tel: +86-512-65883343;               Fax: +86-512-65882787

Email: panxq@suda.edu.cn

Group Website

http://polychem.suda.edu.cn/index.aspx

Research Interests:

1. Organoselenium chemistry

2. Organoselenium-containing polymer

3. Smart materials

Representative Publications:

1.Xu, G.; Zhang, M.; Chen, S.; Xu, Y.; Wang, D.; Sun, Y.; Huang, X.; Zhang, X.; Li, J.; Zhang, J.;Zhu, J.;Zhang, Z.;Pan, X. Q.*. Selenol-Yne Click (SYC) Polymerization Enables Advanced Poly(ester amide)s for Biomedical and Sustainable Solutions. Sci. China Chem. 2025, doi/10.1007/s11426-025-2884-0.

2.Zhang, M.; Chen, S.; Xu, G.; Lu, W.; Li, J.; Zhang, J.; Zhang, Z.; Zhu, J.; Pan, X. Q.* Ultra-Fast Selenol-Yne Click (SYC) Reaction EnablesPoly(selenoacetal) Covalent Adaptable NetworkFormation. Angew. Chem., Int. Ed. 2024, e202410245.

3.Chen, S.; Scholiers, V.; Zhang, M.; Zhang, J.; Zhu, J.*; Prez, F. E. D.*; Pan, X. Q.*, Thermally Responsive Selenide-containing Materials Based on Transalkylation of Selenonium Salts.Angew. Chem., Int. Ed. 2023,62 , e202309652.

4.Wu, Y.*;Bei, Y.; Li, W.; Lu, W.; Zhu, J.; Zhang, Z.; Zhang, T.; Liu, S.; Chen, K.; Jin, H.; Li, L.; Li, M.*; Gao, J.*;Pan, X. Q.*, Advanced Multifunctional Hydrogels for Enhanced Wound Healing through Ultra-Fast Selenol-SNAr Chemistry. Adv. Sci.2024, 2400898.

5.Chen, S.-S.; Scholiers, V.; Chen, H.; An, X.-W.; Li, J.J.; Zhu, J.*; Du Prez, F. E.*; Pan, X.Q*. Transparent Polyurethane Coating with Selenonium Salt-Enhanced Healing and Antibacterial Properties. Chin. J. Polym. Sci. 2025, DOI: 10.1007/s10118-025-3414-7.

6.Gao, J.*; Zhai, Y.; Lu, W.*;Jiang, X.;Zhou, J.; Wu, L.; Du, L.; Ou, C.; Zhang, X.; He, H.; Zhu, J.; Zhang, Z.; Li, M.; Wu, Y.*; Pan, X. Q.*, ROS-sensitive PD-L1 siRNA cationic selenide nanogels for self-inhibition of autophagy and prevention of immune escape. Bioact. Mater.2024,41, 597-610.

7.Shan, F.; Heng, X.; Yao, L.; Xu, G.; Hu, J.; Pan, X.; Chen, G. Efficient and rapid cell surface functionalization: a sub-minute selenol-yne click reaction for bioconjugation. Chem. Sci.2025, DOI: 10.1039/D5SC05541E.

8.Ullah, M. I.;  Ding, X.;  Liu, Y.;  Zou, Y.;  Ain, Q. T.;  Yuan, L.;  Gao, H.;  Yin, Y.;  Ullah, I.;  Shi, G.;  Pan, X.;  Liu, Z.; Ma, W., Surface Configuration Enables PbSe Quantum Dot Solar Cells with Efficiency beyond 12%. ACS Energy Lett. 2025,10, 1806-1812.

9.Chen, S.; Zhang, M.; Li, Q.; Li, J.; Wu, S.; Zhou, J.; Jin, G.; Zhang, Z.; Pan, X. Q.*; Zhu, J.* Visible Light-Responsive Covalent Adaptable Liquid Crystal Elastomers Enabled by Dynamic Allyl Selenide Bonds. Macromolecules 2023,56, 5765–5773.Front Cover.

10.Li, W.-J.; Pan, X.-Q.*; Zhu, J*.; Zhang, Z.-B. Synthesis of Sulfur/Selenium-containing Polyester with Recyclability and Controllable Hydrophilicity and Glass Transition Temperature. Chin. J. Polym. Sci. 2023, 41, 1836-1845.

11.Chen, S.; Lu, W.; Zhang, J.; He, H.; Cang, Y.; Pan, X. Q.*; Zhu, J.* Thermally Driven Diselenide Metathesis: Polarization Process vs Radical Process. ACS Macro Lett. 2022, 11, 264-269.

12.Li, Q. L.; Zhang, Y. Y.; Pan, X. Q*; Zhang, Z. B.; Zhu, J.*; Zhu, X. L. Organoselenium Chemistry-based Polymer Synthesis. Org. Chem. Front. 2020, 7, 2815-2841.

13.Liu, Y.; Li, F.; Shi, G.; Liu, Z.*; Deng, W.; Pan, X. Q.*; Ma, W.*, et. al. PbSe Quantum Dot Solar Cells Based on Directly Synthesized Semiconductive Inks. ACS Energy Lett. 2020, 5, 3797-3803.

14.Lu, W.; Zhu, J.; Hoogenboom, R.; Du Prez, F. E.*; Pan, X. Q.* On-Demand Dissoluble Diselenide-Containing Hydrogel.. Biomacromolecules 2020, 21, 3308-3317.

15.Li, Y.; Pan, X. Q.*; Du Prez, F. E.; Hoogenboom, R.; De Clerck, K.* In Situ Cross-Linked Nanofibers by Aqueous Electrospinning of Selenol-Functionalized Poly(2-oxazoline)s. Macromolecules 2018, 51, 6149-6156.

16.Pan, X. Q.*; Driessen, F.; Zhu, X. L.; Du Prez, F. E.* Selenolactone as a Building Block toward Dynamic Diselenide-Containing Polymer Architectures with Controllable Topology. ACS Macro Lett. 2017, 6, 89-92.

17.Pan, X. Q.; Zhu, J.; Zhang, Z. B.; Cheng, Z. P.; Zhou, N. C.; Zhang, W.; Zhu, X. L.* Straightforward and Highly Efficient Synthesis of Diselenocarbamates. Org. Lett.2012, 14, 6170-6173.