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Effect of Elastic Strains on Adsorption Energies of C,H and O on Transition Metal Oxides
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作者 XIE Tian SONG Erhong 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2024年第11期1292-1302,共11页
Platinum(Pt)-based noble metal catalysts(PGMs)are the most widely used commercial catalysts,but they have the problems of high cost,low reserves,and susceptibility to small-molecule toxicity.Transition metal oxides(TM... Platinum(Pt)-based noble metal catalysts(PGMs)are the most widely used commercial catalysts,but they have the problems of high cost,low reserves,and susceptibility to small-molecule toxicity.Transition metal oxides(TMOs)are regarded as potential substitutes for PGMs because of their stability in oxidizing environments and excellent catalytic performance.In this study,comprehensive investigation into the influence of elastic strains on the adsorption energies of carbon(C),hydrogen(H)and oxygen(O)on TMOs was conducted.Based on density functional theory(DFT)calculations,these effects in both tetragonal structures(PtO_(2),PdO_(2))and hexagonal structures(ZnO,CdO),along with their respective transition metals were systematically explored.It was identified that the optimal adsorption sites on metal oxides pinpointed the top of oxygen or the top of metal atom,while face-centered cubic(FCC)and hexagonal close-packed(HCP)holes were preferred for the transition metals.Furthermore,under the influence of elastic strains,the results demonstrated significant disparities in the adsorption energies of H and O between oxides and transition metals.Despite these differences,the effect of elastic strains on the adsorption energies of C,H and O on TMOs mirrored those on transition metals:adsorption energies increased under compressive strains,indicating weaker adsorption,and decreased under tension strains,indicating stronger adsorption.This behavior was rationalized based on the d-band model for adsorption atop a metallic atom or the p-band model for adsorption atop an oxygen atom.Consequently,elastic strains present a promising avenue for tailoring the catalytic properties of TMOs. 展开更多
关键词 density functional theory adsorption energy elastic strain engineering transition metal oxide CATALYST
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冶金法提纯废旧铝合金过程的溶质分布数值模拟研究 被引量:2
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作者 徐晓伟 李军 +1 位作者 许振明 李建国 《热加工工艺》 北大核心 2020年第1期53-56,67,共5页
采用固相-液相两相凝固模型(体积平均法)对冶金法提纯金属铝的过程进行了数值模拟研究。基于欧拉模型耦合求解了凝固过程的热对流、溶质对流以及宏观传热、传质、动量传输。结果表明,该两相凝固模型适用于冶金法提纯过程,成功预测了该... 采用固相-液相两相凝固模型(体积平均法)对冶金法提纯金属铝的过程进行了数值模拟研究。基于欧拉模型耦合求解了凝固过程的热对流、溶质对流以及宏观传热、传质、动量传输。结果表明,该两相凝固模型适用于冶金法提纯过程,成功预测了该过程的温度场、流场以及溶质分布;冶金法对废旧铝合金的提纯具有非常明显的效果。 展开更多
关键词 溶质分布 冶金法提纯 体积平均法 数值模拟
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213 mm大直径单晶硅直拉法制备过程的热场模拟研究 被引量:1
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作者 徐晓伟 王斐 +1 位作者 冉瑞应 李军 《热加工工艺》 北大核心 2023年第9期72-75,共4页
基于有限体积法得到单晶炉腔内的温度场,研究加热功率、晶体转速以及坩埚转速对液-固界面的影响。计算结果表明,加热功率对液-固界面及热场影响显著,加热功率的精确控制对于稳定的液-固界面至关重要;在一定范围内,晶体转速的增加会使得... 基于有限体积法得到单晶炉腔内的温度场,研究加热功率、晶体转速以及坩埚转速对液-固界面的影响。计算结果表明,加热功率对液-固界面及热场影响显著,加热功率的精确控制对于稳定的液-固界面至关重要;在一定范围内,晶体转速的增加会使得液-固界面的位置出现抬升,而坩埚转速对液-固界面的影响不太明显。 展开更多
关键词 大直径单晶硅 直拉法 加热功率 晶体转速 坩埚转速 数值模拟
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