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基于桨轮二钌/二铑节点的网状亚胺连接配位聚合物:合成及金属位点依赖性光催化还原CO

Reticular Imine-Linked Coordination Polymers Based on Paddlewheel Diruthenium/Dirhodium Nodes: Synthesis and Metal-Site Dependent Photocatalytic Reduction of CO.

作者信息

Itoh Chisa, Kitada Masaki, Kondo Mio, Masaoka Shigeyuki, Yoshino Haruka, Kosaka Wataru, Ootani Yusuke, Matsuda Junko, Kubo Momoji, Konno Toyohiko J, Miyasaka Hitoshi

机构信息

Institute for Materials Research, Tohoku University, 2-1-1 Katahira, Aoba-ku, Sendai, 980-8577, Japan.

Department of Chemistry, Graduate School of Science, Tohoku University, 6-3 Arama-ki-Aza-Aoba, Aoba-ku, Sendai, 980-8578, Japan.

出版信息

ChemSusChem. 2024 Dec 6;17(23):e202400885. doi: 10.1002/cssc.202400885. Epub 2024 Aug 30.

Abstract

The paddlewheel-type dimetal core ([M]) is a ubiquitous motif in the nodes in coordination polymers (CPs) and metal-organic frameworks (MOFs). However, their preparation has relied on ligand-substitution-labile metal ions owing to challenges associated with crystallization. Consequently, examples featuring ligand-substitution-inert metal ions, such as Ru or Rh, are scarce. This study presents the synthesis of novel reticular imine-linked CPs incorporating the paddlewheel-type diruthenium(II, II) ([Ru ]; 1-Ru) or dirhodium(II, II) ([Rh ]; 1-Rh) subunits. The synthetic approach involved a Schiff base dehydration condensation reaction between p-formylbenzoate-bridged [Ru ] or [Rh ] precursors (i. e., CHO-Ru and CHO-Rh, respectively) and 2,5-dimethyl-1,4-phenylenediamine in a 1 : 2 ratio. The catalytic activities of 1-Ru and 1-Rh for the photochemical reduction of CO in a heterogeneous system depended on the metal site. The 1-Ru system exhibited exceptional selectivity, generating 3.0×10 μmol g of CO after 24 h of irradiation, whereas the 1-Rh system generated a lower amount of CO (3.2×10 μmol g). The catalytic activity of 1-Ru ranked with that of all relevant catalytic systems. This study paves the way for the exploration of [Ru ]- or [Rh ]-based polymers with open metal site-dependent functional properties.

摘要

桨轮型双金属核([M])是配位聚合物(CPs)和金属有机框架(MOFs)节点中普遍存在的结构单元。然而,由于结晶方面的挑战,它们的制备依赖于配体取代不稳定的金属离子。因此,以配体取代惰性金属离子(如Ru或Rh)为特征的例子很少。本研究展示了新型网状亚胺连接的CPs的合成,其中包含桨轮型二钌(II, II)([Ru];1-Ru)或二铑(II, II)([Rh];1-Rh)亚基。合成方法涉及对甲酰基苯甲酸桥连的[Ru]或[Rh]前体(即分别为CHO-Ru和CHO-Rh)与2,5-二甲基-1,4-苯二胺以1:2的比例进行席夫碱脱水缩合反应。1-Ru和1-Rh在多相体系中对CO光化学还原的催化活性取决于金属位点。1-Ru体系表现出优异的选择性,光照24小时后产生3.0×10 μmol g的CO,而1-Rh体系产生的CO量较低(3.2×10 μmol g)。1-Ru的催化活性与所有相关催化体系相当。本研究为探索具有开放金属位点依赖性功能特性的基于[Ru]或[Rh]的聚合物铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df9b/11632573/0396a2dfef19/CSSC-17-e202400885-g001.jpg

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