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Autocatalytic decomposition of carbonic acid

机译:碳酸的自催化分解

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Long held to be unstable or metastable in the gas phase, carbonic acid has successfully been produced and identified in its gaseous form in recent decades. Theoretical studies have indicated that isolated carbonic acid in the gas phase may in fact be quite stable, its decomposition attributable to the catalytic effect of water molecules, either present or produced in a chain reaction by an initially slow decomposition. In this study, a previously unreported autocatalytic decomposition route is studied using high-accuracy ab initio quantum chemical methods. Results indicate that a carbonic acid dimer may react and decompose in a single-step, highly concerted reaction. The transition state of this reaction was characterized, and the reaction pathway was found to have significantly lower activation energy than the uncatalyzed decomposition, and comparable or lower energy than the water-catalyzed reaction. The results indicate that gaseous carbonic acid should be unstable even in the absence of water.
机译:长期以来一直在气相中处于不稳定或亚稳态状态,近几十年来,已经成功地生产并鉴定了以气态形式存在的碳酸。理论研究表明,气相中分离出的碳酸实际上可能非常稳定,其分解可归因于水分子的催化作用,水分子在链反应中通过最初缓慢的分解而存在或产生。在这项研究中,使用高精度的从头算量子化学方法研究了以前未报道的自催化分解途径。结果表明,碳酸二聚体可在一步高度一致的反应中发生反应和分解。表征了该反应的过渡态,并且发现该反应路径具有比未催化分解明显更低的活化能,并且与水催化反应相比具有相当或更低的能量。结果表明,即使没有水,气态碳酸也应该不稳定。

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