Yang Ai-Nin, Lin Jiann T, Li Chun-Ting
Department of Chemistry, National Taiwan Normal University, Taipei 11677, Taiwan.
Institute of Chemistry, Academia Sinica, Taipei 11529, Taiwan.
ACS Appl Mater Interfaces. 2021 Feb 24;13(7):8435-8444. doi: 10.1021/acsami.0c21542. Epub 2021 Feb 11.
An electrically conductive Cu-MOF, {[Cu(6-mercaptonicotinic acid)(6-mercaptonicotinate)]·NH}, was successfully electrodeposited on the conductive substrates via using poly(3,4-ethylenedioxythiophene) (PEDOT) as the binder. Multiple functionalities of the Cu-MOF microparticle within the Cu-MOF/PEDOT composite electrode were systematically vindicated as (1) releasing the cohesive strength among the PEDOT matrix, thus enhancing the film adhesion to substrate, (2) providing excellent intrinsic heterogeneous rate constant via lowering the reaction active energy, (3) supplying numerous active sites at the center or edges on its (-Cu-S-) honeycomb-like planes, (4) facilitating the electron transfer through its two-dimensional (-Cu-S-) plains, and (5) benefiting the penetration of the redox mediators through its porous frameworks. In multiple redox mediators (i.e., I/I, cobalt(II/III)-complex, and copper(I/II)-complex), the composite Cu-MOF/PEDOT electrode exhibited superior electrocatalyst activity and kept almost 100% of its initial redox peak currents after continuous cyclic voltammetric scanning for 300 cycles. As a high-performance electrocatalyst for the counter electrode in dye-sensitized solar cells (DSSCs), the composite Cu-MOF/PEDOT electrode rendered its cell a decent solar-to-electricity conversion efficiency of up to 9.45% at 1 sun and 22.80% at room light illumination. Compared to the traditional platinum electrode (7.67%), the low-cost Cu-MOF/PEDOT composite electrode has great possibility to be used for various electrochemical devices and the Internet-of-things applications.
一种导电的铜基金属有机框架材料{[Cu(6 - 巯基烟酸)(6 - 巯基烟酸酯)]·NH},通过使用聚(3,4 - 乙烯二氧噻吩)(PEDOT)作为粘合剂,成功地电沉积在导电基底上。系统地证明了铜基金属有机框架/聚(3,4 - 乙烯二氧噻吩)(Cu - MOF/PEDOT)复合电极中铜基金属有机框架微粒的多种功能为:(1) 释放聚(3,4 - 乙烯二氧噻吩)(PEDOT)基质之间的内聚强度,从而增强薄膜与基底的附着力;(2) 通过降低反应活化能提供优异的本征异相速率常数;(3) 在其(-Cu - S-)蜂窝状平面的中心或边缘提供大量活性位点;(4) 促进电子通过其二维(-Cu - S-)平面转移;(5) 有利于氧化还原介质通过其多孔框架渗透。在多种氧化还原介质(即I/I、钴(II/III)配合物和铜(I/II)配合物)中,复合Cu - MOF/PEDOT电极表现出优异的电催化活性,在连续循环伏安扫描300次后,其初始氧化还原峰电流几乎保持100%。作为染料敏化太阳能电池(DSSCs)对电极的高性能电催化剂,复合Cu - MOF/PEDOT电极使电池在1个太阳光强下具有高达9.45%的良好光电转换效率,在室内光照下为22.80%。与传统铂电极(7.67%)相比,低成本的Cu - MOF/PEDOT复合电极具有用于各种电化学装置和物联网应用的巨大潜力。