Theoretical and Physical Chemistry Institute, National Hellenic Research Foundation, 48 Vassileos Constantinou Avenue, 11635 Athens, Greece.
Nanoscale. 2019 Apr 11;11(15):7335-7346. doi: 10.1039/c9nr01620a.
Heteroatom-doped graphene-based materials attract great interest as non-metal electrocatalysts for the oxygen reduction reaction (ORR). In this work, a straightforward approach was described to prepare nanoensembles of star-shaped oligothiophene 1 supramolecularly immobilized on sulfur-doped graphene sheets (SG). The 1/SG ensemble was comprehensively characterized by Raman and IR spectroscopy and morphologically imaged by HR-TEM, while the loading of 1 onto SG was estimated by TGA under an inert atmosphere. Based on detailed electrochemical and electrocatalytic assays, 1/SG was proved to be a highly efficient and stable electrocatalyst toward the ORR. The high catalytic activity of 1/SG was attributed to the (a) presence of chemical defects, induced by the insertion of electron rich sulfur within the lattice of SG, (b) existence of structural defects, due to the generation of vacancies along the carbon lattice in SG, and (c) high and homogeneous coverage of the SG surface by the sulfur-rich star-shaped oligothiophene 1. In addition, the optical properties of 1/SG were screened by UV-Vis and steady-state and time-resolved PL and the development of strong photoinduced intra-ensemble electronic interactions within the ensemble was revealed. Exploiting the latter, by photoirradiating 1/SG, a significantly improved photoelectrocatalytic activity towards the ORR was observed.
基于杂原子掺杂的石墨烯材料作为非贵金属氧还原反应(ORR)电催化剂受到了广泛关注。在这项工作中,我们描述了一种简单的方法,用于制备超分子固定在硫掺杂石墨烯片(SG)上的星形寡聚噻吩 1 的纳米聚集体。通过拉曼和红外光谱对 1/SG 聚集体进行了全面的表征,并通过高分辨 TEM 进行了形貌成像,同时在惰性气氛下通过 TGA 估算了 1 在 SG 上的负载量。基于详细的电化学和电催化测试,证明了 1/SG 是一种高效稳定的 ORR 电催化剂。1/SG 的高催化活性归因于(a)在 SG 晶格中插入富电子硫引起的化学缺陷,(b)由于 SG 中碳晶格沿其产生空位引起的结构缺陷,和(c)富含硫的星形寡聚噻吩 1 对 SG 表面的高且均匀的覆盖。此外,通过紫外-可见光谱以及稳态和时间分辨 PL 筛选了 1/SG 的光学性质,并揭示了聚集体中强的光诱导内聚集体电子相互作用的发展。利用后者,通过光辐照 1/SG,观察到对 ORR 的光催化活性有显著提高。