论文著作:
[1] C. D. Wang, H. Wang, R. Y. Zhao* et al, Hollow rod-shaped Cu-In-Zn-S@ZnCo2O4@In2O3 tandem heterojunction for efficient visible light-induced photocatalytic hydrogen production, Fuel, 2024, 355, 129537.
[2] H. Wang, Q. Liu, R. Y. Zhao* et al, Preparation of Mn0.8Cd0.2S/NiCo2S4 Z-scheme heterojunction composite for enhanced photocatalytic hydrogen production, Surf. Interfaces, 2024, 45, 103900.
[3] Y. F. Xu, T. Z. Han, R.Y. Zhao* et al, Cd1-xNixS nanocrystals decorated flower-like Mn doped In2O3 microspheres with enhanced reduction activity of CO2, Int. J. Hydrogen Energ., 2024, 59, 299-305.
[4] J. R. Peng, T. Z. Han, R.Y. Zhao* et al, Hollow CuCo2O4-Mn0.2Cd0.8S double-shell nanospheres for enhanced photocatalytic hydrogen production activity, Mater. Today Chem., 2024, 36, 101973.
[5] G. M. Miao, L. X. Chen, R. Y. Zhao* et al, Preparation and properties of a flexible photothermal conversion device of azobenzene-based with photoinduced phase transition type, Chem J. Chinese U., 2023, 44, 20230256.
[6] Y. Wang, Y. Han, R. Y. Zhao* et al, Efficient flower-like ZnSe/Cu0.08Zn0.92S photocatalyst for hydrogen production application, Front. Chem. Sci. Eng., 2023, 17, 1301-1310.
[7] R. Y. Zhao*, J. H. Mu, J. Y. Bai, X. L. Shang, F. S. Liu*, S. K. Yan*, Smart responsive azo-copolymer with photoliquefaction for switchable adhesive application, ACS Appl. Mater. Interfaces, 2022, 14, 14, 16678-16686.
[8] R. Y. Zhao, Y. C. Li, J. Y. Bai, J. S. Han*, F. S. Liu*, S. K. Yan, Preparation of flexible photo-responsive film based on novel photo-liquefiable azobenzene derivative for solar thermal fuel application, Dyes Pigm., 2022, 202, 110277.
[9] F. X. Dai, Y. Wang, X. R. Zhou, R. Y. Zhao*, J. S. Han*, L. Wang, ZnIn2S4 decorated Co-doped NH2-MIL-53(Fe) nanocomposites for efficient photocatalytic hydrogen production. Appl. Surf. Sci., 2020, 517, 146161(1-6).
[10] J. S. Han, Y. Liu, Y. Wang, R. Y. Zhao*, L. Wang*, Construction of ternary CdxMo1-xSe quantum dots for enhanced photocatalytic hydrogen production. J. Mater. Sci., 2020, 55(3), 1117-1125.
[11] J. S. Han, F. X. Dai, Y. Liu, R. Y. Zhao*, L. Wang*, S. H. Feng, Synthesis of CdSe/SrTiO3 nanocomposites with enhanced photocatalytic hydrogen production activity. Appl. Surf. Sci., 2019, 467, 1033-1039.
[12] R. Y. Zhao, X. X. Sun, Y. R. Jin, J. S. Han*, L. Wang*, F. S. Liu, Au/Pd/g-C3N4 nanocomposites for photocatalytic degradation of tetracycline hydrochloride. J. Mater. Sci., 2019, 54(7), 5445-5456.
[13] R. Y. Zhao, C. Y. Yu, J. S. Han, Y. L. Fu, M. Li, D. H. Hu, F. S. Liu*, Preparation of photo-responsive film by electrochemical deposition method and the application in optical information storage. Chem. J. Chinese. U., 2019, 40(2), 358-365.
[14] R. Y. Zhao, J. S. Han, M. Huang, F. S. Liu, L. Wang, Y. G. Ma*, Photoresponsive Conjugated Microporous Polymer Films Fabricated by Electrochemical Deposition for Controlled Release. Macromol. Rapid. Comm., 2017, 38(18), 1700274.
[15] R. Y. Zhao, X. X. Sun, J. Sun, L. Wang, J. S. Han*, Polypyrrole-modified CuS nanoprisms for efficient near-infrared photothermal therapy. RSC Adv., 2017, 7(17), 10143-10149.
[16] R. Y. Zhao, X. P. Zhan, L. Yao, Q. D. Chen, Z. Q. Xie, Y. G. Ma*, Electrochemical deposition of azobenzene-containing network films with high-contrast and stable photoresponse. Macromol. Rapid. Comm., 2016, 37(7), 610-615.
[17] R. Y. Zhao, X. P. Zhan, J. Yao, G. N. Sun, Q. D. Chen, Z. Q. Xie, Y. G. Ma*, Reversible photo-controlled mass transfer in a photo-responsive conjugated main-chain polymer film for high contrast surface patterning. Polym. Chem., 2013, 4(21), 5382-5386.