研究成果
近期代表论文
[1] Niu, Y.; Li, S.; Zhang, J.; Wan, W.; He, Z.; Liu, J.; Liu, K.; Ren, S.; Ge, L.; Du, X.*; et al. Static–Dynamic Fluorescence Patterns Based on Photodynamic Disulfide Reactions for Versatile Information Storage. Small2021, 17 (35), 2102224.
[2] Zhang, J.; Ding, H.; Liu, X.; Gu, H.; Wei, M.; Li, X.; Liu, S.; Li, S.; Du, X.*; Gu, Z. Facile Surface Functionalization Strategy for Two-Photon Lithography Microstructures. Small2021, 17 (34), 202101048.
[3] Li, S.; Zeng, Y.; Hou, W.; Wan, W.; Zhang, J.; Wang, Y.; Du, X.*; Gu, Z. Photo-responsive photonic hydrogel: in situ manipulation and monitoring of cell scaffold stiffness. Mater. Horizons2020, doi:10.1039/d0mh01019g.
[4] Hou, W.; Wang, Y.; Bian, Y.; Zhang, J.; Li, S.; Zeng, Y.; Du, X.*; Gu, Z. Reconfi gurable Surface with Photodefinable Physicochemical Properties for User-Designable Cell Scaffolds. ACS Appl. Bio Mater.2020, 3, 2230.
[5] Zeng, Y.; Du, X.*; Hou, W.; Liu, X.; Levkin, P. A.; Gu, Z. UV-Triggered Polydopamine Secondary Modification: Fast Deposition and Removal of Metal Nanoparticles. Adv. Funct. Mater.2019, 29, 1901875.
[6] Wang, M.; Wang, Y.; Gao, B.; Bian, Y.; Liu, X.; He, Z.; Zeng, Y.; Du, X.*; Gu, Z. Fast Strategy to Functional Paper Surfaces. ACS Appl. Mater. Interfaces2019, 11, 14445–14456.
[7]Du, X.*; Wang, M.; Welle, A.; Behboodi-Sadabad, F.; Wang, Y. L.; Levkin, P. A.; Gu, Z. Reparable Superhydrophobic Surface with Hidden Reactivity, Its Photofunctionalization and Photopatterning. Adv. Funct. Mater.2018, 28, 1803765.
[8] Liu, X.; Gu, H.; Wang, M.; Du, X.; Gao, B.; Elbaz, A.; Sun, L.; Liao, J.; Xiao, P.; Gu, Z. 3D Printing of Bioinspired Liquid Superrepellent Structures. Adv. Mater.2018, 30, 1800103.
[9] Zeng, Y.; Du, X.; Gao, B.; Liu, B.; Xie, Z.; Gu, Z. Single-Step Fabrication of High-Throughput Surface-Enhanced Raman Scattering Substrates. ACS Appl. Mater. Interfaces2018, 10, 4222–4232.
[10]Du, X.; Li, L.; Sadabad, F.; Welle, A.; Li, J.; Heissler, S.; Zhang, H.; Plumere, N.; Levkin, P. A. Bio-Inspired Strategy for Controlled Dopamine Po