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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis and properties of a novel tripodal bipyridyl ligand tb-carbinol and its Ru(II)-Re(I) trimetallic complexes: investigation of multimetallic artificial systems for photocatalytic CO2 reduction
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Synthesis and properties of a novel tripodal bipyridyl ligand tb-carbinol and its Ru(II)-Re(I) trimetallic complexes: investigation of multimetallic artificial systems for photocatalytic CO2 reduction

机译:新型三脚架双吡啶配体tb-甲醇及其Ru(II)-Re(I)三金属配合物的合成和性质:光催化还原CO2的多金属人工体系的研究

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A novel tripodal ligand, tris[(4'-methyl-2,2'-bipyridin-4-yl)methyl] carbinol (tb-carbinol) and its homonuclear and heteronuclear Ru(II)-Re(I) complexes have been synthesized and characterized by NMR spectroscopy, elemental analysis, and mass spectroscopy. The spectroscopic, electrochemical and photocatalytic properties of the Ru(II)-Re(I) complexes have been investigated. In these supramolecular complexes with tb-carbinol as a bridging ligand, the intramolecular interaction among the terminal metal centers is very weak. In the cases of Ru(II) and Re(I) heteronuclear systems, when the Re(I) moieties are excited, the emission from the Re(I) moiety is efficiently quenched and the intensity of the emission from the Ru(II) moiety increases. The rate constant of energy transfer from Re(I) moieties to Ru(II) unit in RuRe2 is 1.7 x 10(8) s(-1). From the point of view of the free energy change, the intramolecular electron transfer from the Ru(II) moiety to the Re(I) moiety could proceed smoothly in the ground state. Both of Ru2Re and RuRe2 show excellent photocatalytic activities to the CO2 reduction. RuRe2 exhibits a turnover number of 190 for CO formation compared with 89 from the model complexes system after 16 h of irradiation (TNCO calculated based on Ru(II) moiety concentration). Ru2Re shows a higher turnover number than the model complexes system, 110 compared with 55 from the model system (TNCO calculated based on Re(I) moiety concentration). The bridging ligand of Ru(II)-Re(I) heteronuclear tripodal systems, tb-carbinol, plays an important role in converting radiant energy to chemical energy in the form of CO from CO2. Enhancement of the photocatalytic response to light in the visible region has been achieved by fabricating supramolecular systems featuring covalently linked Ru(II) and Re(I) moieties.
机译:合成了新型三脚架配体,三[((4'-甲基-2,2'-联吡啶-4-基)甲基]甲醇(tb-甲醇)及其同核和杂核Ru(II)-Re(I)配合物并通过NMR光谱,元素分析和质谱进行表征。研究了Ru(II)-Re(I)配合物的光谱,电化学和光催化性能。在这些以tb-甲醇为桥联配体的超分子配合物中,末端金属中心之间的分子内相互作用非常弱。在Ru(II)和Re(I)异核系统的情况下,当Re(I)部分被激发时,Re(I)部分的发射被有效地猝灭,Ru(II)的发射强度部分增加。 RuRe2中从Re(I)部分到Ru(II)单元的能量转移速率常数为1.7 x 10(8)s(-1)。从自由能变化的角度来看,分子内电子从Ru(II)部分转移到Re(I)部分可以在基态下平稳进行。 Ru2Re和RuRe2均表现出优异的光催化活性,可降低CO2的还原率。 RuRe2展示出一氧化碳的转化数为190,而辐照16小时后的模型配合物系统的转化数为89(TNRu基于Ru(II)部分浓度计算)。 Ru2Re显示出比模型配合物系统更高的周转数,相比于模型系统中的55(根据Re(I)成分浓度计算得出的TNCO),它的周转次数更高。 Ru(II)-Re(I)异核三脚架系统的桥联配体tb-甲醇在将辐射能从CO2转化为CO的过程中起着重要作用。通过制造以共价连接的Ru(II)和Re(I)部分为特征的超分子系统,已经实现了对可见区域中光的光催化响应的增强。

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