Prasannachandran Ranjith, Vineesh Thazhe Veettil, Anil Athira, Krishna B Murali, Shaijumon Manikoth M
School of Physics , Indian Institute of Science Education and Research Thiruvananthapuram , Maruthamala PO , Thiruvananthapuram , Kerala 695551 , India.
Department of Chemistry , CMS College , Kottayam , Kerala 686001 , India.
ACS Nano. 2018 Nov 27;12(11):11511-11519. doi: 10.1021/acsnano.8b06671. Epub 2018 Oct 26.
Phosphorene has attracted great interest in the rapidly emerging field of two-dimensional layered nanomaterials. Recent studies show promising electrocatalytic activity of few-layered phosphorene sheets toward the oxygen evolution reaction (OER). However, controllable synthesis of mono/few-layered phosphorene nanostructures with a large number of electrocatalytically active sites and exposed surface area is important to achieve significant enhancement in OER activity. Here, a novel strategy for controlled synthesis and in situ surface functionalization of phosphorene quantum dots (PQDs) using a single-step electrochemical exfoliation process is demonstrated. Phosphorene quantum dots functionalized with nitrogen-containing groups (FPQDs) exhibit efficient and stable electrocatalytic activity for OER with an overpotential of 1.66 V @ 10 mA cm, a low Tafel slope of 48 mV dec, and excellent stability. Further, we observe enhanced electron transfer kinetics for FPQDs toward the Fe/Fe redox probe in comparison with pristine PQDs. The results demonstrate the promising potential of phosphorene as technologically viable OER electrodes for water-splitting devices.
磷烯在迅速兴起的二维层状纳米材料领域引起了极大的关注。最近的研究表明,少层磷烯片对析氧反应(OER)具有有前景的电催化活性。然而,可控合成具有大量电催化活性位点和暴露表面积的单层/少层磷烯纳米结构对于显著提高OER活性很重要。在此,展示了一种使用单步电化学剥离工艺对磷烯量子点(PQD)进行可控合成和原位表面功能化的新策略。用含氮基团功能化的磷烯量子点(FPQD)对OER表现出高效且稳定的电催化活性,在10 mA cm时过电位为1.66 V,塔菲尔斜率低至48 mV dec,且具有出色的稳定性。此外,与原始PQD相比,我们观察到FPQD对Fe/Fe氧化还原探针的电子转移动力学增强。结果表明磷烯作为用于水分解装置的技术上可行的OER电极具有广阔的潜力。