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瑞利散射法研究超声喷流二氧化碳团簇尺度轴向分布
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作者 付鹏涛 韩纪锋 +2 位作者 牟艳红 韩丹 杨朝文 《物理学报》 SCIE EI CAS CSCD 北大核心 2011年第5期280-284,共5页
针对特定尺度的小锥喷嘴,用瑞利散射方法研究了超声喷流二氧化碳团簇的瑞利散射信号S和团簇尺度N的轴向分布.实验发现,散射信号强度的对数ln(S)随着轴向距离Z的平方根的增大线性减小,团簇尺度最大位置出现在距喷嘴轴向距离4mm附近,在背... 针对特定尺度的小锥喷嘴,用瑞利散射方法研究了超声喷流二氧化碳团簇的瑞利散射信号S和团簇尺度N的轴向分布.实验发现,散射信号强度的对数ln(S)随着轴向距离Z的平方根的增大线性减小,团簇尺度最大位置出现在距喷嘴轴向距离4mm附近,在背压6—17bar范围内散射信号S与背压P满足S∝P3.6—4.2,测量到最大的团簇约为1.6×104分子/团簇. 展开更多
关键词 二氧化碳团簇 轴向分布 尺度 瑞利散射
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Computational Study on Interactions between CO2 and (TiO2)n Clusters at Specific Sites
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作者 Hitler Louis Ling-ju Guo +2 位作者 Shuang Zhu Sajjad Hussain Tao He 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2019年第6期674-686,I0002,I0046-I0058,共27页
The energetic pathways of adsorption and activation of carbon dioxide (CO2) on low-lying compact (TiO2)n clusters are systematically investigated by using electronic structure calculations based on density-functional ... The energetic pathways of adsorption and activation of carbon dioxide (CO2) on low-lying compact (TiO2)n clusters are systematically investigated by using electronic structure calculations based on density-functional theory (DFT). Our calculated results show that CO2 is adsorbed preferably on the bridge O atom of the clusters, forming a "chemisorption" carbonate complex, while the CO is adsorbed preferably to the Ti atom of terminal Ti-O.The computed carbonate vibrational frequency values are in good agreement with the results obtained experimentally, which suggests that CO2 in the complex is distorted slightly from its undeviating linear configuration. In addition, the analyses of electronic parameters, electronic density, ionization potential, HOMO-LUMO gap, and density of states(DOS) confirm the charge transfer and interaction between CO2 and the cluster. From the predicted energy profiles, CO2 can be easily adsorbed and activated, while the activation of CO2 on (TiO2)n clusters are structure-dependent and energetically more favorable than that on the bulk TiO2. Overall, this study critically highlights how the small (TiO2)n clusters can influence the CO2 adsorption and activation which are the critical steps for CO2 reduction the surface of a catalyst and subsequent conversion into industrially relevant chemicals and fuels. 展开更多
关键词 (TiO2)n clusters Carbon dioxide Reduction Adsorption ACTIVATION
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