化学
面(心理学)
催化作用
氢
制氢
氢氧化物
金属
Crystal(编程语言)
反应性(心理学)
纳米技术
化学工程
结晶学
化学物理
晶体结构
无机化学
材料科学
有机化学
医学
心理学
社会心理学
替代医学
人格
病理
计算机科学
工程类
五大性格特征
程序设计语言
作者
Yu‐Rim Hong,Soumen Dutta,Sun Woo Jang,Odongo Francis Ngome Okello,Hyeonae Im,Si‐Young Choi,Jeong Woo Han,In Su Lee
摘要
Despite the Pt-catalyzed alkaline hydrogen evolution reaction (HER) progressing via oxophilic metal-hydroxide surface hybridization, maximizing Pt reactivity alongside operational stability is still unsatisfactory due to the lack of well-designed and optimized interface structures. Producing atomically flat two-dimensional Pt nanodendrites (2D-PtNDs) through our 2D nanospace-confined synthesis strategy, this study tackles the insufficient interfacial contact effect during HER catalysis by realizing an area-maximized and firmly bound lateral heterointerface with NiFe-layered double hydroxide (LDH). The well-oriented {110} crystal surface exposure of Pt promotes electronic interplay that bestows strong LDH binding. The charge-relocated interfacial bond in 2D-PtND/LDH accelerates the hydrogen generation steps and achieves nearly the highest reported Pt mass activity enhancement (∼11.2 times greater than 20 wt % Pt/C) and significantly improved long-term operational stability. This work uncovers the importance of the shape and facet of Pt to create heterointerfaces that provide catalytic synergy for efficient hydrogen production.
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