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原子簇离子解离统计分布的动力学研究 被引量:1
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作者 张强 黄荣彬 +1 位作者 刘朝阳 郑兰荪 《物理化学学报》 SCIE CAS CSCD 北大核心 1996年第3期213-217,共5页
对激光产生的原子簇离子,通过质量选择,可以对选出的原子簇离子进行碰撞诱导解离或光解离研究,在对实验记录的解离质谱的分析中发现,同一系列碎片离子的相对丰度分布符合一定的统计规律.不同的统计分布形式对于不同的解离机理,通... 对激光产生的原子簇离子,通过质量选择,可以对选出的原子簇离子进行碰撞诱导解离或光解离研究,在对实验记录的解离质谱的分析中发现,同一系列碎片离子的相对丰度分布符合一定的统计规律.不同的统计分布形式对于不同的解离机理,通过求解解离反应的动力学方程,得到碎片高子统计分布的函数表达式,从而可以通过分析解离质谱中碎片离子的统计分布,探讨相应的原子簇离子解离反应的机理. 展开更多
关键词 解离 原子簇离子 统计分布 质谱 解离反应机理
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Reaction mechanism of methyl nitrite dissociation during co catalytic coupling to dimethyl oxalate:A density functional theory study 被引量:4
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作者 Chen Fan Man Luo Wende Xiao 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第1期132-139,共8页
Dissociation of methyl nitrite is the first step during CO catalytic coupling to dimethyl oxalate followed by hydrogenation to ethyl glycol in a typical coal to liquid process. In this work, the first-principle calcul... Dissociation of methyl nitrite is the first step during CO catalytic coupling to dimethyl oxalate followed by hydrogenation to ethyl glycol in a typical coal to liquid process. In this work, the first-principle calculations based on density functional theory were performed to explore the reaction mechanism for the non-catalytic dissociation of methyl nitrite in the gas phase and the catalytic dissociation of methyl nitrite on Pd(111) surface since palladium supported on alpha-alumina is the most effective catalyst for the coupling. For the non-catalytic case, the calculated results show that the CH_3O–NO bond will break with a bond energy of 1.91 eV, and the produced CH_3O radicals easily decompose to formaldehyde, while the further dissociation of formaldehyde in the gas phase is difficult due to the strong C–H bond. On the other hand, the catalytic dissociation of methyl nitrite on Pd(111) to the adsorbed CH_3O and NO takes place with a small energy barrier of 0.03 eV. The calculated activation energies along the proposed reaction pathways indicate that(i) at low coverage, a successive dehydrogenation of the adsorbed CH_3O to CO and H is favored while(ii) at high coverage, hydrogenation of CH_3O to methanol and carbonylation of CH_3O to methyl formate are more preferred. On the basis of the proposed reaction mechanism,two meaningful ways are proposed to suppress the dissociation of methyl nitrate during the CO catalytic coupling to dimethyl oxalate. 展开更多
关键词 Methyl nitrite Catalytic Non-catalytic Dissociation Density functional theory
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