二乙炔
血红素
材料科学
串联
催化作用
分子
氨
光化学
组合化学
纳米技术
电催化剂
拓扑(电路)
化学工程
无机化学
联轴节(管道)
偶联反应
纳米结构
反应机理
纳米片
产量(工程)
电化学
氨生产
反应中间体
金属
钯
烷烃
化学
作者
Anqi Lv,Jiahao Ma,Kexin Liu,Z.Y. Ma,Yi‐Fei Deng,Qiuyu Zhang,Changhong Wang,Sifei Zhuo
标识
DOI:10.1002/adfm.202517067
摘要
Abstract A tandem electrocatalyst with dual‐active‐sites is anticipated to organize the coupling reaction between various intermediates from nitrate to ammonia. Herein, by engineering the metal nodes and ligands of Zr‐based metal–organic frameworks (Zr‐MOFs) with Fe‐porphyrins (Hemins) and diacetylene linkages, respectively, a tandem catalyst of diacetylene‐linked Zr–MOFs anchored Hemins has been achieved. The key point here is that the diacetylene linkages could serve as cofactors of Hemins to manage the nitrate to ammonia process via NO 2 − intermediates. In addition, the ultrathin Zr–MOFs nanosheet with a well‐defined open framework allows it to organize the shuttle diffusion and coupling reaction of various reactants between Hemins and diacetylene linkages in its deep interior. In detail, the NO 2 − desorbed from the Hemins could diffuse onto the diacetylene linkages to finish the following hydrogenation process to NH 3 . Therefore, such an ultrathin hybrid of diacetylene‐linked Zr–MOF@Hemin achieves a Faradaic efficiency of 95.6% with an ammonia yield of 240.9 µmol h −1 cm −2 at −0.5 V versus RHE. This work indicates the activity of diacetylene linkage in catalysis independent of graphdiyne‐based 2D structures by organizing it into the topological structure of Zr–MOFs, which expands the scope of graphdiyne in structure.
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