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部分破坏 Ti-MOFs 对光(电)催化 H 演化的影响,通过电荷载流子俘获对表面积的主导作用。

Influences of Partial Destruction of Ti-MOFs on Photo(electro)catalytic H Evolution by Dominating Role of Charge Carrier Trapping over Surface Area.

机构信息

Smart Materials Research Institute, Southern Federal University, Sladkova 178/24, Rostov-on-Don, 344090, Russia.

Department of Chemistry, University of Kerala, Kariavattom Campus, Thiruvananthapuram, Kerala, 695 581, India.

出版信息

Small. 2023 Jun;19(26):e2300492. doi: 10.1002/smll.202300492. Epub 2023 Mar 20.

DOI:10.1002/smll.202300492
PMID:36938900
Abstract

The design of water-stable photo and electrocatalysts of metal-organic frameworks (MOFs) for its promising catalytic applications at long-term irradiations or persisted current loads is extremely necessary but still remains as challenging. A limited number of reports on Ti-MOF-based catalysts for water splitting are only available to explain and understand the correlation between the nature of materials and MOFs array. Herein, spherical Ti-MOFs and corresponding partially annealed hollow core-shell Ti-MOFs (Ti-MOF/D) are designed and the correlation with their photo(electro)catalytic water splitting performance is evaluated. The switchable valence state of Ti for the Ti-MOF as a function of molecular bonding is the possible reason behind the observed photocatalytic hydrogen generation and light-harvesting ability of the system. Besides, the defect state, solid core-shell mesoporous structure, and active sites of Ti-MOF help to trap the charge carriers and the reduction of the recombination process. This phenomenon is absent for hollow core-shells Ti-MOF/D spheres due to the rigid TiO outer surface although there is a contradiction in surface area with Ti-MOF. Considering the diversity of Ti-MOF and Ti-MOF/D, further novel research can be designed using this way to manipulate their properties as per the requirements.

摘要

设计水稳定的金属有机骨架(MOFs)光催化剂和电催化剂对于其在长期辐照或持续电流负载下有前途的催化应用是极其必要的,但仍然具有挑战性。关于基于 Ti-MOF 的水分解催化剂的报道数量有限,仅可用于解释和理解材料性质与 MOFs 阵列之间的相关性。本文设计了球形 Ti-MOF 及其相应的部分退火的中空核壳 Ti-MOF(Ti-MOF/D),并评估了它们与光(电)催化水分解性能的相关性。Ti-MOF 中 Ti 的可切换价态作为分子键合的函数是观察到的光催化制氢和系统光捕获能力的可能原因。此外,Ti-MOF 的缺陷态、固体质核壳介孔结构和活性位点有助于捕获载流子并减少复合过程。对于中空核壳 Ti-MOF/D 球体,由于 TiO 外表面的刚性,不存在这种现象,尽管其比表面积与 Ti-MOF 存在矛盾。考虑到 Ti-MOF 和 Ti-MOF/D 的多样性,可以通过这种方式设计进一步的新型研究,根据需要操纵它们的性质。

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