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首页> 外文期刊>Chemistry: A European journal >Selective chemisorption of carbon monoxide by organic-inorganic hybrid materials incorporating cobalt(III) corroles as sensing components
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Selective chemisorption of carbon monoxide by organic-inorganic hybrid materials incorporating cobalt(III) corroles as sensing components

机译:有机-无机杂化材料结合钴(III)腐蚀物作为传感组分对一氧化碳的选择性化学吸附

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摘要

Twenty-one hybrid materials incorporating cobalt(III) corrole complexes were synthesized by a sol-gel process or by grafting the metallocorrole onto a mesostructured silica of the SBA-15 type. All the materials show an almost infinite selectivity for carbon monoxide with respect to dinitrogen and dioxygen in the low-pressure domain where the chemisorption phenomenon is predominant. This peculiar property is of prime importance for an application as a CO sensor. The selectivity slightly decreases at high pressures where nonselective physisorption phenomena mainly occur. The percentage of active sites for CO chemisorption ranges from 22 to 64%. This low percentage may be attributable to interactions between the cobalt(III) corroles with silanol or siloxane groups remaining at the surface of the materials which prevent further coordination of the CO molecule. Notably, the most efficient materials are those prepared in the presence of a protecting ligand (pyridine) during the gelation or the grafting process. ne removal of this ligand after the gelation process releases a cavity around the cobalt ion that favors the coordination of a carbon monoxide molecule. The CO adsorption properties of the SBA-15 hybrid were not affected over a period of several months thus indicating a high stability of the material. Conversely, the xerogel capacities slowly decrease owing to the evolution of the material structure.
机译:通过溶胶-凝胶法或通过将金属茂位接枝到SBA-15型介孔结构的二氧化硅上,合成了21种掺入钴(III)钴配合物的杂化材料。在化学吸附现象占主导地位的低压领域,所有材料都对一氧化碳具有几乎无限的相对于二氮和二氧的选择性。对于作为CO传感器的应用,这种特殊的特性至关重要。在主要发生非选择性物理吸附现象的高压下,选择性略有降低。 CO化学吸附的活性位点的百分比为22至64%。较低的百分比可能归因于钴(III)分子与残留在材料表面的硅烷醇或硅氧烷基团之间的相互作用,从而阻止了CO分子的进一步配位。值得注意的是,最有效的材料是在凝胶化或接枝过程中在保护性配体(吡啶)存在下制备的材料。在胶凝过程之后,该配体的去除将释放钴离子周围的空腔,该空腔有利于一氧化碳分子的配位。 SBA-15杂化材料的CO吸附性能在几个月内没有受到影响,因此表明该材料具有很高的稳定性。相反,干凝胶容量由于材料结构的演变而缓慢降低。

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