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Switchable catalysis and CO2 sensing by reduction resistant, luminescent copper–thiolate complexes

机译:通过抗还原发光铜-硫酸盐络合物进行可切换的催化和 CO2 传感

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摘要

Metal–thiolate complexes have been the focus of research for several years because of their unique photophysical properties and their use as a precursor for synthesizing various well-defined metal nanoclusters. A rational understanding of their structure–property relationship is necessary to realize their full potential in practical applications. Herein, we demonstrate the synthesis of a unique copper–thiolate complex with reversibly switchable catalytic and photoluminescence (PL) properties. The as-synthesized complex at basic pH (Complex B) showed cyan PL with a strong peak at ∼488 nm (cyan) and a small shoulder peak at ∼528 nm (green). When the pH of the complex was changed to acidic (Complex A), the PL was switched to light green. Such pH-responsive PL properties were demonstrated to be useful for pH and CO2 sensing. The switchable properties originate from their two distinct structural states at two different pHs. We found that Complex A was resistant to high concentrations of a strong reducing agent, and had an intermediate oxidation state of copper (Cu+) with good thermodynamic stability. Furthermore, the switchable catalytic property was investigated with a 4-nitrophenol reduction and 3,3′,5,5′-tetramethylbenzidine (TMB) oxidation reaction. The reduction kinetics followed pseudo-first-order, where the catalytic activity was enhanced by more than 103 times when Complex B was switched to Complex A. A similar trend was also observed for TMB oxidation. Our design strategy demonstrates that redox switchable metal–thiolate complexes could be a powerful candidate for a plethora of applications.
机译:Metal-thiolate复合物的焦点几年来,因为他们的研究独特的光物理性质和他们的使用综合各种定义良好的前兆金属纳米束。他们的组织性能的关系必须充分发挥他们的潜力实际的应用程序。一个独特的合成copper-thiolate复杂与可逆可切换的催化光致发光(PL)属性。复杂as-synthesized复杂在基本的pH值(B)显示青色PL强峰∼488海里(青色)和一个小肩峰∼528海里(绿色)。酸性(复杂),PL转向亮绿色。pH值和二氧化碳被证明是有用的吗传感。他们两个截然不同的结构在两个州不同的小灵通。耐高浓度的强还原剂,中间氧化铜(铜+)具有良好的热力学状态稳定。4-nitrophenol财产调查减少和3,3,5,5 ' -tetramethylbenzidine(三甲)氧化反应。符合一级,催化活动增强了103倍复杂的B是转向复杂的类似趋势也观察到三甲氧化。设计策略表明氧化还原可切换的metal-thiolate复合物可能是一个强大的大量的候选人应用程序。

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