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Comparative analysis of frictional behavior and mechanism of molybdenum ditelluride with different structures
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作者 Lina ZHANG Xinfeng TAN +2 位作者 Jianguo JIAO Dan GUO Jianbin LUO 《Friction》 SCIE EI CAS CSCD 2024年第1期110-119,共10页
Two-dimensional(2D)transition metal dichalcogenides(TMDCs)have layered structures with excellent tribological properties.Since the energy difference between hexagonal-molybdenum ditelluride(2H-MoTe_(2))and distorted o... Two-dimensional(2D)transition metal dichalcogenides(TMDCs)have layered structures with excellent tribological properties.Since the energy difference between hexagonal-molybdenum ditelluride(2H-MoTe_(2))and distorted octahedral-molybdenum ditelluride(1T′-MoTe_(2))is very small among the transition metal dichalcogenides(TMDCs),MoTe_(2) becomes one of the most promising candidates for phase engineering.In our experiment,we found that the friction force and friction coefficient(COF)of 2H-MoTe_(2) were an order of magnitude smaller than those of 1T′-MoTe_(2) by the atomic force microscope(AFM)experiments.The friction difference between 1T′-MoTe_(2) and 2H-MoTe_(2) was further verified in molecular dynamics(MD)simulations.The density functional theory(DFT)calculations suggest that the friction contrast is related to the difference in sliding energy barrier of the potential energy surface(PES)for a tip sliding across the surface.The PES obtained from the DFT calculation indicates that the maximum energy barrier and the minimum energy path(MEP)energy barrier of 2H-MoTe_(2) are both smaller than those of 1T′-MoTe_(2),which means that less energy needs to be dissipated during the sliding process.The difference in energy barrier of the PES could be ascribed to its larger interlayer spacing and weaker Mo–Te interatomic interactions within the layers of 2H-MoTe_(2) than those of 1T′-MoTe_(2).The obvious friction difference between 1T′-MoTe_(2) and 2H-MoTe_(2) not only provides a new non-destructive means to detect the phase transition by the AFM,but also provides a possibility to tune friction by controlling the phase transition,which has the potential to be applied in extreme environments such as space lubrication. 展开更多
关键词 FRICTION two-dimensional(2D)materials distorted octahedral-molybdenum ditelluride(1T′-MoTe_(2)) hexagonal-molybdenum ditelluride(2H-MoTe_(2)) phase transition
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水热合成法制备六方相三氧化钼(h-MoO_3)及其电化学性能 被引量:6
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作者 宫方方 李继文 +1 位作者 魏世忠 徐流杰 《粉末冶金工业》 CAS 北大核心 2013年第1期18-22,共5页
本文以七钼酸铵为前驱体材料,采用水热合成法制备了六方相三氧化钼,并应用XRD、SEM、TEM微观分析手段对三氧化钼粉体进行表征。研究结果表明:在pH=1,最终反应温度170℃,反应时间25h时可得到直径2~4μm、长度15~20μm的六角柱状三氧化... 本文以七钼酸铵为前驱体材料,采用水热合成法制备了六方相三氧化钼,并应用XRD、SEM、TEM微观分析手段对三氧化钼粉体进行表征。研究结果表明:在pH=1,最终反应温度170℃,反应时间25h时可得到直径2~4μm、长度15~20μm的六角柱状三氧化钼粉体。以六方相三氧化钼作为锂电池正极活性物质,采用电池测试系统对h-MoO3的电化学性能进行检测,结果显示,h-MoO3的首次放电比容量达171.4mA.h/g,循环20次之后比容量降至95.7mA.h/g,容量保持率为55.8%,电化学性能较正交相三氧化钼纳米带差。 展开更多
关键词 水热合成法 六方相三氧化钼 电化学性能
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过量Nb对水热合成六方三氧化钼组成和形态的影响
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作者 刘子琪 李红肖 王璐 《中国钼业》 2023年第3期45-48,共4页
以四水合七钼酸铵和浓硝酸为原料,过量的五氧化二铌为添加剂,并采用XRD和FESEM等技术对水热反应进程中产物组成和微观形貌展开研究。结果表明,水热反应温度150℃反应12 h,当未添加五氧化二铌时,产物为六方h-MoO_(3),并且表面光滑,颗粒... 以四水合七钼酸铵和浓硝酸为原料,过量的五氧化二铌为添加剂,并采用XRD和FESEM等技术对水热反应进程中产物组成和微观形貌展开研究。结果表明,水热反应温度150℃反应12 h,当未添加五氧化二铌时,产物为六方h-MoO_(3),并且表面光滑,颗粒尺寸约为0.38μm;添加过量五氧化二铌时,产物组成和形态结构会发生变化:当Nb/Mo摩尔比为0.5∶1时,产物主要为六方h-MoO_(3),伴随残留五氧化二铌;继续增大Nb/Mo摩尔比时,h-MoO 3相对含量减小,h-MoO_(3)纵向表面依旧光滑,但横向表面由许多细小柱状晶粒聚集而成。随着Nb/Mo摩尔比的增加,h-MoO_(3)颗粒尺寸在一定程度上能够得到细化。 展开更多
关键词 六方三氧化钼 五氧化二铌 物相组成 形态结构
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