材料科学
催化作用
六方氮化硼
铂金
电催化剂
化学工程
氢
六方晶系
氮化物
硼
纳米技术
无机化学
电化学
结晶学
物理化学
电极
石墨烯
有机化学
化学
工程类
图层(电子)
作者
Rayantan Sadhukhan,Amar Kumar,Ponnappa Kechanda Prasanna,Anku Guha,Raúl Arenal,Sudip Chakraborty,Tharangattu N. Narayanan
标识
DOI:10.1021/acsami.3c15296
摘要
Chemical stability of hexagonal boron nitride (hBN) ultrathin layers in harsh electrolytes and the availability of nitrogen site in hBN to stabilize metals like Pt are used here to develop a high intrinsic activity hydrogen evolution reaction (HER) catalyst having low loaded Pt (5 weight% or <1 atomic%). A catalyst having a nonzero oxidation state for Pt (with a Pt-N bonding) is shown to be HER active even with low catalyst loadings (0.114 mgcm-2). Electronic modification of the shear exfoliated hBN sheets is achieved by Au nanoparticle-based surface decoration (hBN_Au), and further anchoring with Pt develops a catalyst (hBN_Au_Pt) with high turnover frequency for HER (∼15). The hBN_Au_Pt is shown to be a highly durable catalyst even after the accelerated durability test for 10000 cycles and temperature annealing at 100 °C. Density functional theory based calculations gave insights in to the electronic modifications of hBN with Au and the catalytic activity of the hBN_Au_Pt system, in line with the experimental studies, indicating the demonstration of a new class of catalyst system devoid of issues such as carbon corrosion and Pt leaching.
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