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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Allosteric Regulation in Carbon Monoxide (CO) Release: Anion Responsive CO-Releasing Molecule (CORM) Derived from (Terpyridine)phenol Manganese Tricarbonyl Complex with Colorimetric and Fluorescence Monitoring
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Allosteric Regulation in Carbon Monoxide (CO) Release: Anion Responsive CO-Releasing Molecule (CORM) Derived from (Terpyridine)phenol Manganese Tricarbonyl Complex with Colorimetric and Fluorescence Monitoring

机译:一氧化碳(CO)释放中的变构规则:来自比色和荧光监测的(噻吩吡啶)酚锰三羰基复合物的阴离子响应共释放分子(Corm)

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摘要

A new CO-releasing terpyridine based manganese(I) tricarbonyl complex, [MnBr(CO)(3)(terpy-C6H4OH)] (1 center dot Mn-OH) functioning via light has been reported. For the first time, we have demonstrated the allosteric regulation concept to control the CO-releasing properties of a CO-releasing molecule (CORM). Fluoride ion is reported to function as an allosteric activator to control the rate of CO release in the CORM. Complex 1 center dot Mn-OH represents an interesting new class of CO-releasing system that releases CO upon irradiation with blue light (410 nm) over a period of 40 min with the half-time of 9.8 min. Fluoride ion selectively binds to the phenol moiety of the complex through hydrogen bonding and deprotonates to phenolate with a color change. Interestingly in the presence of fluoride ion, the rate of CO release is fast with the half-time of less than a minute. The rate of CO release is allosterically regulated by fluoride anion and can be monitored through a color change, fluorescence, and absorption based spectral changes along with IR studies and myoglobin assay.
机译:已经报道了一种新的共释放的基于吡啶基锰(I)三羰基络合物,通过光功能的[MNBR(CO)(3)(3)(Terpy-C6H4OH)](1中心点MN-OH)。我们首次证明了构建调控概念,以控制共释放分子(CINT)的共释放性质。据报道氟离子用作颠覆活化剂以控制蜗环中的CO释放速率。复杂的1中心点MN-OH代表了一种有趣的新类共同释放系统,其在40分钟内在40分钟内通过蓝光(410nm)在40分钟内释放CO。氟离子通过氢键选择性地结合复合物的苯酚部分,并用颜色变化去除酚酸盐。有趣的是在氟离子存在下,CO释放的速率快速少于一分钟。 Co释放的速率由氟化物阴离子构成体积调节,可以通过颜色变化,荧光和基于吸收的光谱变化以及IR研究和肌球蛋白测定来监测。

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