Wang Ting, Wang Jiabo, Chen Weilin, Zheng Xiaotao, Wang Enbo
Key Laboratory of Polyoxometalate Science of Ministry of Education, Department of Chemistry, Northeast Normal University, Changchun, Jilin, 130024, P.R. China.
Chemistry. 2017 Dec 6;23(68):17311-17317. doi: 10.1002/chem.201703519. Epub 2017 Nov 14.
The design and development of efficient and stable nonprecious-metal-based catalysts for counter electrodes (CEs) in dye-sensitized solar cells (DSSCs) has received a great deal of attention. In this work, molybdenum carbide nanoparticles homogeneously distributed in a nitrogen-rich carbon matrix (Mo C@NC) have been synthesized from inexpensive raw materials (polyoxometalate and dicyandiamide) by a facile one-step solid-phase synthesis method. The novel Mo C@NC hybrid was not only used as a CE in a DSSC, but also showed superior catalytic activity towards I /I as a redox electrolyte. The power conversion efficiency of a DSSC with Mo C@NC as the CE was as high as 6.49 %, comparable to that with Pt (6.38 %). The CE was prepared by a drop-coating method, without the addition of another conductive polymer. Most importantly, the method circumvents the problem of the sample falling off from the fluorine-doped tin oxide (FTO), and the CE could be repeatedly reused with unchanged efficiency. Therefore, it opens the way for the development of platinum-free catalysts with low cost, simple processing, good stability, and high efficiency.
用于染料敏化太阳能电池(DSSC)对电极(CE)的高效稳定的非贵金属基催化剂的设计与开发受到了广泛关注。在这项工作中,通过简便的一步固相合成法,由廉价原料(多金属氧酸盐和双氰胺)合成了均匀分布在富氮碳基质(Mo C@NC)中的碳化钼纳米颗粒。这种新型的Mo C@NC杂化物不仅用作DSSC中的对电极,而且对I⁻/I⁻氧化还原电解质表现出优异的催化活性。以Mo C@NC作为对电极的DSSC的功率转换效率高达6.49%,与以Pt作为对电极的DSSC(6.38%)相当。该对电极通过滴涂法制备,无需添加其他导电聚合物。最重要的是,该方法避免了样品从氟掺杂氧化锡(FTO)上脱落的问题,并且该对电极可以以不变的效率重复使用。因此,它为开发低成本、加工简单且稳定性好、效率高的无铂催化剂开辟了道路。