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Bi系高温超导体CuO_2面内Cu-O键振动的理论分析
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作者 胥荣 鲜于泽 +2 位作者 李国庆 王强 李德仁 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 1999年第4期441-443,共3页
根据分子振动理论,采用简化模型分析了 Bi 系高温超导体 Cu O2 面内 Cu O 键振动的振动模式,计算了单一红外活性模 Eu 的振动频率·计算结果表明: Cu O2 面内 Cu O 键 Eu 模式伸缩振动的频率为673... 根据分子振动理论,采用简化模型分析了 Bi 系高温超导体 Cu O2 面内 Cu O 键振动的振动模式,计算了单一红外活性模 Eu 的振动频率·计算结果表明: Cu O2 面内 Cu O 键 Eu 模式伸缩振动的频率为6738 cm - 1 ,8032 cm - 1 ,弯曲振动的频率为412 cm - 1·计算结果中6738 cm - 1 ,412 cm - 1 与 Bi 系高温超导体红外吸收光谱的实验分析结果较好吻合,8032 cm - 1 与实验分析结果中800 cm - 1 附近归属尚未确定的吸收峰峰位比较接近· 展开更多
关键词 超导体 铜氧键振动 高TC 铋系 二氧化铜面
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Tunable activity of electrocatalytic CO dimerization on strained Cu surfaces:Insights from ab initio molecular dynamics simulations 被引量:1
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作者 Hong Liu Jian Liu Bo Yang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第11期2898-2905,共8页
Controlling catalytic activities through surface strain engineering remains a hot topic in electrocatalysis studies.Herein,ab initio molecular dynamics(AIMD)simulation associated with free energy sampling technology w... Controlling catalytic activities through surface strain engineering remains a hot topic in electrocatalysis studies.Herein,ab initio molecular dynamics(AIMD)simulation associated with free energy sampling technology were performed to study the energetics of the key step of producing C2 products in electrocatalytic reduction of CO or CO_(2),i.e.CO dimerization,on strained Cu(100)with an explicit aqueous solvent model.It is worth mentioning that when compressive strain reaches a certain extent,the surface of Cu(100)will undergo reconstruction.We showed that,from tensile to compressive strain,the free energy barrier of CO dimerization decreased,suggesting that the activity of CO dimerization increases.It was also found that some of the reconstructed surfaces showing the lowest free energy barriers but might be less stable can be stabilized in the presence of adsorbed O or CO.Upon detailed quantitative analysis on the charges of surface Cu atoms,we found that the free energy barriers were strongly correlated with the charge of Cu atoms where the OCCO intermediate adsorbs.When the surfaces structures of Cu(100)were altered under compressive strain,the electronic structure of surface Cu atoms was monitored and thus the activity of electrocatalytic CO dimerization can be tuned. 展开更多
关键词 Electrocatalytic CO dimerization Surface strain CU Surface reconstruction Ab initio molecular dynamics
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