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Application of Si-doped graphene as a metal-free catalyst for decomposition of formic acid: A theoretical study

机译:硅掺杂石墨烯作为无金属催化剂分解甲酸的理论研究

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Using density functional theory calculations, the adsorption and catalytic decomposition of formic acid (HCOOH) over Si-doped graphene are investigated. For the stable adsorption geometries of HCOOH over Si-doped graphene, the electronic structure properties are analyzed by adsorption energy, density of states, and charge density difference. A comparison of the reaction pathways reveals that both dehydration and dehydrogenation of HCOOH can occur over Si-doped graphene. The estimated reaction energies and the activation barriers suggest that for the dehydration of HCOOH on the Si-doped graphene, the rate-controlling step is H+OH H2O reaction. For the dehydrogenation of HCOOH, the rate-determining step is the breaking of the CH bond of the HCOO group to form the CO2 molecule and the atomic H. Our results reveal that the low cost Si-doped graphene can be used as an efficient nonmetal catalyst for OH bond cleavage of HCOOH. (c) 2015 Wiley Periodicals, Inc.
机译:利用密度泛函理论计算,研究了掺杂Si的石墨烯对甲酸(HCOOH)的吸附和催化分解。为了使HCOOH在掺杂Si的石墨烯上具有稳定的吸附几何形状,可通过吸附能,态密度和电荷密度差来分析电子结构性质。反应路径的比较表明,HCOOH的脱水和脱氢都可以在掺Si的石墨烯上发生。估计的反应能量和活化势垒表明,对于Si掺杂石墨烯上HCOOH的脱水,控制速率的步骤是H + OH H2O反应。对于HCOOH的脱氢,决定速率的步骤是打破HCOO基团的CH键以形成CO2分子和原子H。我们的结果表明,低成本的Si掺杂石墨烯可以用作有效的非金属HCOOH的OH键断裂的催化剂。 (c)2015年威利期刊有限公司

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