专家人才库
章福祥 研究员;杰青;优青

学历:博士研究生

学科:物理化学

电话:0411-84762155

邮箱:fxzhang@dicp.ac.cn

地址:大连市中山路457号中国科学院大连化学物理研究所6号楼201

邮编:116023

简历介绍

章福祥,男,国家百千万人才工程入选者,英国皇家化学会会士,中科院青促会优秀会员,太阳能制储氢材料与催化课题组(DNL1621,主页:www.zhanglab.dicp.ac.cn)组长。2004年于南开大学获得博士学位,2007-2011于巴黎第六大学和东京大学做博士后研究,201110月到大连化物所工作。

     主要从事太阳能光化学转化研究,涉及宽光谱捕光半导体材料设计合成,碳源(CO2, CO等)和氮源(NO3-, NOx, N2等)选择性转化电催化材料设计合成,绿色氢能制储转化器件构筑及其原位动态过程机制研究等方面。已在 Joule, Nat. Catal., Nat. Commun., J. Am. Chem. Soc., Angew. Chem. Int. Ed. Adv. Mater. SCI期刊发表系列论文,获授权专利多件。主持承担国家基金委杰青、重点项目,科技部重点研发计划专项,大连市领军人才项目等。

研究方向
 
职务
社会任职
获奖及荣誉
 
代表论著

1) Water-stable nickel metal–organic framework nanobelts for cocatalyst-free photocatalytic water splitting to produce hydrogen. Journal of the American Chemical Society, 2022, 144, 6, 2747-2754.

2) Unraveling of cocatalysts photodeposited selectively on facets of BiVO4 to boost solar water splitting. Nature Communications, 2022,13, 484.

3) Main Descriptors to correlate structures with performances of electrocatalysts. Angewandte Chemie International Edition, 2022, 61, e202111026.

4) Synthesis of a visible-light-responsive perovskite SmTiO2N bifunctional photocatalyst via an evaporation-assisted layered-precursor strategy. Advanced Materials, 2021, 33, 2101883.

5) Nanostructure engineering and modulation of (Oxy)Nitrides for application in visible-light -driven water splitting. Advanced Materials, 2021, 33, 2004697.

6).  Heterostructure of 1D Ta3N5 nanorod/BaTaO2N nanoparticle fabricated by a one-step ammonia thermal route for remarkably promoted solar hydrogen production.  Advanced Materials, 2019, 1808185.

7). Surface strategies for particulate photocatalysts toward artificial photosynthesis. Joule, 2018, 2, 2260.

8). Visible-light-responsive 2D cadmium-organic framework single crystals with dual functions of water reduction and oxidation. Advanced Materials, 2018, 30, 1803401.

9). Redox-based visible-light-driven Z-scheme overall water splitting with apparent quantum efficiency exceeding 10%. Joule, 2018, 2, 2393.

10). Strategies and methods of modulating nitrogen-incorporated oxide photocatalysts for promoted water splitting. Accounts of Materials Research, 2022, DOI: 10.1021/accountsmr.1c00271.

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