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Single-Site Ni-Grafted TiO with Diverse Coordination Environments for Visible-Light Hydrogen Production.

作者信息

Zhang Pu, Zeng Haihua, Wen Decai, Sui Xiaoyu, Wang Zhuan, Wang Ying, Chen Hailong, Weng Yuxiang, Long Jinlin

机构信息

State Key Lab of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou University, Fuzhou, 350116, P. R. China.

Department of Chemistry, Longyan University, Longyan, 364000, P. R. China.

出版信息

ChemSusChem. 2024 Jan 22;17(2):e202301041. doi: 10.1002/cssc.202301041. Epub 2023 Nov 6.

Abstract

Solar hydrogen production at a high efficiency holds the significant importance in the age of energy crisis, while the micro-environment manipulation of active sites on photocatalysts plays a profound role in enhancing the catalytic performance. In this work, a series of well-defined single-site Ni-grafted TiO photocatalysts with unique and specific coordination environments, 2,2'-bipyridine-Ni-O-TiO (T-Ni Bpy) and 2-Phenylpyridine-Ni-O-TiO (T-Ni Phpy), were constructed with the methods of surface organometallic chemistry combined with surface ligand exchange for visible-light-induced photocatalytic hydrogen evolution reaction (HER). A prominent rate of 33.82 μmol ⋅ g  ⋅ h and a turnover frequency of 0.451 h for Ni are achieved over the optimal catalyst T-Ni Bpy for HER, 260-fold higher than those of Ni-O-TiO . Fewer electrons trapped oxygen vacancies and a larger portion of long-lived photogenerated electrons (>3 ns, ~52.9 %), which were demonstrated by the electron paramagnetic resonance and femtosecond transient IR absorption, correspond to the photocatalytic HER activity over the T-Ni Bpy. The number of long-lived free electrons injected from the Ni photoabsorber to the conduction band of TiO is one of the determining factors for achieving the excellent HER activity.

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