Efficient and stable photocatalytic H2 evolution by self-assembly of zirconium(iv) coordination with perylene diimide supramolecules under visible light irradiation†

IF 10.7 2区 材料科学 Q1 CHEMISTRY, PHYSICAL Journal of Materials Chemistry A Pub Date : 2021-02-15 DOI:10.1039/D1TA00464F
Haoran Ding, Zhiqiang Wang, Kangyi Kong, Shufan Feng, Lifeng Xu, Haonan Ye, Wenjun Wu, Xueqing Gong and Jianli Hua
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引用次数: 7

Abstract

Wide spectral response and rapid separation and transfer of charge carriers are critical to the high activity of photocatalysts. Metal ions can work as an electron mediator to promote charge transfer. Therefore, we adopted the strategy of forming coordination bonds between metal cations of zirconium(IV) with a perylene diimide (PDI)-based organic supramolecular system to broaden the absorption spectrum and facilitate separation of photoinduced charges. We successfully prepared a series of doped supramolecular photocatalysts P-PMPDI containing different contents of ZrIV cations via phosphonate/ZrIV coordination bonds, and among them, P-PMPDI-Zr (ZrIV?:?P-PMPDI = 0.25?:?1) exhibited the highest activity toward the hydrogen evolution reaction (HER) of 2.52 mmol h?1 (50.46 mmol g?1 h?1) with an apparent quantum yield of 11.7% at 630 nm and good stability. Besides, we also prepared Co, Ni, and Cu-doped P-PMPDI supramolecular catalysts (M?:?P-PMPDI = 0.25?:?1), all of which showed higher HER activity than the bare P-PMPDI, but still lower activity than P-PMPDI-Zr. X-ray photoelectron spectroscopy (XPS), electron spin resonance (ESR) and density functional theory (DFT) calculations further demonstrated that ZrIII ions formed in the photocatalytic process are the active sites, rendering the supramolecular photocatalyst P-PMPDI-Zr more favorable for photocatalytic H2 evolution.

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可见光下锆(iv)与苝酰二亚胺超分子配位自组装高效稳定的光催化析氢研究
广泛的光谱响应和快速的载流子分离和转移是光催化剂高活性的关键。金属离子可以作为电子介质促进电荷转移。因此,我们采用基于苝二酰亚胺(PDI)的有机超分子体系在锆(IV)的金属阳离子之间形成配位键的策略来拓宽吸收光谱,促进光致电荷的分离。我们通过膦酸盐/ZrIV配位键成功制备了一系列含有不同ZrIV阳离子的掺杂超分子光催化剂P-PMPDI,其中P-PMPDI- zr (ZrIV?:?P-PMPDI = 0.25: 1)对析氢反应(HER)的活性最高,为2.52 mmol h?1 (50.46 mmol g?在630 nm处的表观量子产率为11.7%,稳定性好。此外,我们还制备了Co、Ni和cu掺杂的P-PMPDI超分子催化剂(M?:?P-PMPDI = 0.25: 1), HER活性均高于裸P-PMPDI,但仍低于P-PMPDI- zr。x射线光电子能谱(XPS)、电子自旋共振(ESR)和密度泛函理论(DFT)计算进一步证明,光催化过程中形成的ZrIII离子是活性位点,使得超分子光催化剂P-PMPDI-Zr更有利于光催化析氢。
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来源期刊
Journal of Materials Chemistry A
Journal of Materials Chemistry A CHEMISTRY, PHYSICAL-ENERGY & FUELS
CiteScore
19.50
自引率
5.00%
发文量
1892
审稿时长
1.5 months
期刊介绍: The Journal of Materials Chemistry A, B & C covers a wide range of high-quality studies in the field of materials chemistry, with each section focusing on specific applications of the materials studied. Journal of Materials Chemistry A emphasizes applications in energy and sustainability, including topics such as artificial photosynthesis, batteries, and fuel cells. Journal of Materials Chemistry B focuses on applications in biology and medicine, while Journal of Materials Chemistry C covers applications in optical, magnetic, and electronic devices. Example topic areas within the scope of Journal of Materials Chemistry A include catalysis, green/sustainable materials, sensors, and water treatment, among others.
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