期间外派至天津大学,负责金属-有机多孔材料的制备与电催化性能研究,有一篇1区sci期刊在投。
研究方向
1、电催化CO2还原。通过对电催化材料(Ag、Sn、Bi基金属)组成、化学态和结构的设计调控以及电解装置、工艺的筛选优化来提高CO2RR的活性,探究其中的构效关系和反应的热力学。动力学过程。
2、单原子-纳米金属催化剂的设计与制备。通过开发新的制备方法实现从纳米到原子级Ag催化剂的制备。通过借助MOF和COF中配位结构的设计实现单原子金属位点(Ni、Cu、Co,等)的引入与调控。
3、电催化生物质转化利用。通过催化剂元素选择、合金化和尺度筛选等因素调节,采用电化学工艺将生物质平台化合物(5-羟甲基糠醛,等)转化为增值化学品以期其能替代部分传统化石能源分子。
科研成果
Zheng C+, Zhang S+, Zhao M T, et al. Single Site Coordination Enabled Construction of Metal-diketimine-linked Covalent Organic Frameworks for Boosted Electrooxidation of Biomass Derivative. Small, submitted.
Zhang S, Sun M, Wang K Y, et al. Conversion of Organically Directed Selenidostannate into Porous SnO2 Exhibiting Effective Electrochemical Reduction of CO2 to C1 Products. ACS Sustainable Chemistry & Engineering, 2021, 9, 2358.
Zhang S, Mo Z Z, Wang J, Liu H L, et al. Ultra-stable oxygen species in Ag nanoparticles anchored on g-C3N4 for enhanced electrochemical reduction of CO2[J]. Electrochimica Acta, 2021, 390: 138831.
Zhang S, Wang J, Wang C. A gradient Sn4+@ Sn2+ core@ shell structure induced by strong metal oxide-support interaction for enhanced CO2 electroreduction[J]. Dalton Transactions, 2022, 51: 16135-16144.
Tan T, Zhang S, Wang J, et al. Resolving the stacking fault structure of silver nanoplates. Nanoscale, 2021, 13, 195.
Tan T, Zhang S, Wang C. Branched Ag nanoplates: synthesis dictated by suppressing surface diffusion and catalytic activity for nitrophenol reduction. CrystEngComm, 2017, 19, 6339.
P. Liu, H. Liu, S. Zhang, J. Wang, C. Wang, Significant role of reconstructed character on CuO-derived catalyst for enhanced electrocatalytic reduction of CO2 to multicarbon products. Electrochimica Acta. 2020, 354, 136753.
Liu, P., H Liu, Zhang, S., Wang, J. , & Wang, C. Effects of thicknesses and sizes of BiOX nanoplates precursors on derived Bi nanosheets for efficient CO2 electroreduction[J]. Journal of CO2 Utilization, 2021, 51: 101643.
Liu P, Liu H, Zhang S., et al. A General Strategy for Obtaining BiOX Nanoplates Derived Bi Nanosheets as Efficient CO2 Reduction Catalysts by Enhancing CO2- Adsorption and Electron Transfer[J]. Journal of Colloid and Interface Science, 2021, 602.
Yao L, Yang W, Niu Y, Liu J, Zhang S, et al. Comparison of the effects of cation and phosphorus doping in cobalt-based spinel oxides towards the oxygen evolution reaction[J]. CrystEngComm, 2021, 23(8): 1849-1858.
Zhang S, Yang K, Liu Q. “Formation of silver nanoparticles induced by ultrasonically treated sodium dodecyl benzene sulphonate”. Micro & Nano Letters, 2015, 10, 422.
杨柯利,刘全生,张顺,白杰,一种银、金纳米粒子的制备方法[P].发明专利. ZL2014 10307781.9, 2017年2月22日。
王凯耀;张顺,一种用于高效二氧化碳还原的多孔电催化剂的制备方法.申请号:202011489278.1,公开号:CN112609207A。授权公告号:CN 112609207 B