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具有窄带隙的金属化异吲哚啉-卟啉共价有机框架光催化剂用于高效CO转化

Metallated Isoindigo-Porphyrin Covalent Organic Framework Photocatalyst with a Narrow Band Gap for Efficient CO Conversion.

作者信息

Skorjanc Tina, Shetty Dinesh, Mahmoud Mahmoud Elcheikh, Gándara Felipe, Martinez Jose Ignacio, Mohammed Abdul Khayum, Boutros Sandra, Merhi Areej, Shehayeb Elissa O, Sharabati Christa A, Damacet Patrick, Raya Jesus, Gardonio Sandra, Hmadeh Mohamad, Kaafarani Bilal R, Trabolsi Ali

机构信息

Science Division, New York University Abu Dhabi, Saadiyat Island, 129188 Abu Dhabi, United Arab Emirates.

Materials Research Laboratory, University of Nova Gorica, Vipavska 11c, 5270 Ajdovscina, Slovenia.

出版信息

ACS Appl Mater Interfaces. 2022 Jan 12;14(1):2015-2022. doi: 10.1021/acsami.1c20729. Epub 2021 Dec 21.

Abstract

Photocatalytic CO reduction into formate (HCOO) has been widely studied with semiconductor and molecule-based systems, but it is rarely investigated with covalent organic frameworks (COFs). Herein, we report a novel donor-acceptor COF named composed of isoindigo and metallated porphyrin subunits that exhibits high catalytic efficiency (∼50 μmol formate g h) at low-power visible-light irradiation and in the absence of rare metal cocatalysts. Density functional theory calculations and experimental diffuse-reflectance measurements are used to explain the origin of catalytic efficiency and the particularly low band gap (0.56 eV) in this material. The mechanism of photocatalysis is also studied experimentally and is found to involve electron transfer from the sacrificial agent to the excited . The observed high-efficiency conversion could be ascribed to the enhanced CO adsorption on the coordinatively unsaturated cobalt centers, the narrow band gap, and the efficient transfer of the charge originating from the postsynthetic metallation. It is anticipated that this study will pave the way toward the design of new simple and efficient catalysts for photocatalytic CO reduction into useful products.

摘要

光催化将CO还原为甲酸盐(HCOO)已在基于半导体和分子的体系中得到广泛研究,但在共价有机框架(COF)中的研究却很少。在此,我们报道了一种由异靛蓝和金属化卟啉亚基组成的新型供体-受体COF,它在低功率可见光照射且不存在稀有金属助催化剂的情况下表现出高催化效率(约50 μmol甲酸盐 g⁻¹ h⁻¹)。采用密度泛函理论计算和实验漫反射测量来解释该材料催化效率的来源以及其特别低的带隙(0.56 eV)。还通过实验研究了光催化机理,发现其涉及从牺牲剂到激发态的电子转移。观察到的高效转化可归因于在配位不饱和钴中心上增强的CO吸附、窄带隙以及源自后合成金属化的电荷的有效转移。预计这项研究将为设计用于光催化将CO还原为有用产物的新型简单高效催化剂铺平道路。

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