多孔性
纳米晶
材料科学
分形
纳米技术
化学工程
蚀刻(微加工)
纳米
复合材料
图层(电子)
数学分析
数学
工程类
作者
Soumen Dutta,Akshay Gurumoorthi,In Su Lee,Sun Woo Jang,Nitee Kumari,Yu‐Rim Hong,Wonyong Choi,Chang Yun Son,In Su Lee
标识
DOI:10.1002/ange.202303890
摘要
Abstract Herein, by choosing few‐nm‐thin two‐dimensional (2D) nanocrystals of MOF‐5 containing in‐planner square lattices as a modular platform, a crystal lattice‐guided wet‐chemical etching has been rationally accomplished. As a result, two attractive pore patterns carrying Euclidean curvatures; precisely, plus (+)‐shaped and fractal ‐patterned pores via ⟨100⟩ and ⟨110⟩ directional etching, respectively, are regulated in contrast to habitually formed spherical‐shaped random etches on MOF surface. In agreement with the theoretical calculations, a diffusion‐limited etching process has been optimized to devise high‐yield of size‐tunable fractal ‐pores on the MOF surface that tenders for a compatibly high payload of catalytic Re I ‐complexes using the existing large edge area once modified into a free amine‐group‐exposed inner pore surface. Finally, on benefiting from the long‐range fractal opening in 2D MOF support structure, while loaded on an electrode surface, a facilitated cross‐interface charge‐transportation and well‐exposure of immobilized Re I ‐catalysts are anticipated, thus realizing enhanced activity and stability of the supported catalyst in photoelectrochemical CO 2 ‐to‐CO reduction.
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