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基于共价有机框架的无金属二维/二维范德华异质结用于高效太阳能催化

Metal-Free 2D/2D van der Waals Heterojunction Based on Covalent Organic Frameworks for Highly Efficient Solar Energy Catalysis.

作者信息

Yan Ge, Sun Xiaodong, Zhang Yu, Li Hui, Huang Hongwei, Jia Baohua, Su Dawei, Ma Tianyi

机构信息

Institute of Clean Energy Chemistry, Key Laboratory for Green Synthesis and Preparative Chemistry of Adv. Mater., College of Chemistry, Liaoning University, Shenyang, 110036, People's Republic of China.

School of Science, RMIT University, Melbourne, VIC, 3000, Australia.

出版信息

Nanomicro Lett. 2023 May 22;15(1):132. doi: 10.1007/s40820-023-01100-x.

Abstract

Covalent organic frameworks (COFs) have emerged as a kind of rising star materials in photocatalysis. However, their photocatalytic activities are restricted by the high photogenerated electron-hole pairs recombination rate. Herein, a novel metal-free 2D/2D van der Waals heterojunction, composed of a two-dimensional (2D) COF with ketoenamine linkage (TpPa-1-COF) and 2D defective hexagonal boron nitride (h-BN), is successfully constructed through in situ solvothermal method. Benefitting from the presence of VDW heterojunction, larger contact area and intimate electronic coupling can be formed between the interface of TpPa-1-COF and defective h-BN, which make contributions to promoting charge carriers separation. The introduced defects can also endow the h-BN with porous structure, thus providing more reactive sites. Moreover, the TpPa-1-COF will undergo a structural transformation after being integrated with defective h-BN, which can enlarge the gap between the conduction band position of the h-BN and TpPa-1-COF, and suppress electron backflow, corroborated by experimental and density functional theory calculations results. Accordingly, the resulting porous h-BN/TpPa-1-COF metal-free VDW heterojunction displays outstanding solar energy catalytic activity for water splitting without co-catalysts, and the H evolution rate can reach up to 3.15 mmol g h, which is about 67 times greater than that of pristine TpPa-1-COF, also surpassing that of state-of-the-art metal-free-based photocatalysts reported to date. In particular, it is the first work for constructing COFs-based heterojunctions with the help of h-BN, which may provide new avenue for designing highly efficient metal-free-based photocatalysts for H evolution.

摘要

共价有机框架(COFs)已成为光催化领域中一颗冉冉升起的新星材料。然而,它们的光催化活性受到高光生电子 - 空穴对复合率的限制。在此,通过原位溶剂热法成功构建了一种新型的无金属二维/二维范德华异质结,该异质结由具有酮烯胺连接的二维(2D)COF(TpPa - 1 - COF)和二维缺陷六方氮化硼(h - BN)组成。得益于范德华异质结的存在,TpPa - 1 - COF与缺陷h - BN的界面之间可形成更大的接触面积和紧密的电子耦合,这有助于促进电荷载流子的分离。引入的缺陷还可赋予h - BN多孔结构,从而提供更多的反应位点。此外,TpPa - 1 - COF与缺陷h - BN整合后会发生结构转变,这可扩大h - BN和TpPa - 1 - COF导带位置之间的能隙,并抑制电子回流,实验和密度泛函理论计算结果证实了这一点。因此,所得的多孔h - BN/TpPa - 1 - COF无金属范德华异质结在没有助催化剂的情况下对水分解表现出出色的太阳能催化活性,析氢速率可达3.15 mmol g⁻¹ h⁻¹,约为原始TpPa - 1 - COF的67倍,也超过了迄今为止报道的最先进的无金属基光催化剂。特别是,这是首次借助h - BN构建基于COFs的异质结的工作,这可能为设计用于析氢的高效无金属基光催化剂提供新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c450/10200743/83f599cfdc18/40820_2023_1100_Sch1_HTML.jpg

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