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- surface ionic liquid 表面离子液体
- Ionic liquid based technologies and applications. 基于离子液体相关技术与应用。
- TGA-FTIR Study of 1 n butyl-3-methylimidazolium Bromide Ionic Liquid? 1-正丁基-3-甲基咪唑溴化物离子液体TGA-FTIR研究
- Then, tribological properties and theory of ionic liquid for steel-steel or steel-copper rubbing pairs are evaluated by SRV friction test machine and by advanced surface analyzing technology. 然后,通过SRV摩擦磨损试验和现代表面分析技术,探讨了离子液体作为润滑剂,对钢-钢和钢-铜摩擦副的摩擦学性能及摩擦作用机理;
- Reference Lists for Ionic Liquids! 离子液体文献列表!
- Integration of ionic liquids and electrochemistry. 离子液体在电化学中的应用。
- Use of ionic liquids in biocatalysis are discussed. 摘要综述了有关离子液体在生物催化方面的应用。
- The characteristics of ionic liquids are reviewed. 摘要介绍了离子液体的特性;
- Uchikawa, F.; Shimamoto, K., “ Time variability of surface ionic conduction on humidity-sensitive SiO2 films”, Am.Ceram. Soc. Bull. 64 (1985) 1137-1141. 叶陶渊,“化学感测器中湿度感测器的新动向”,科仪新知第二十一卷第一期(1999)83-99.
- Homogeneous Acetylation and Regioselectivity of Cellulose in a New Ionic Liquid. 纤维素在离子液体中的均相乙酰化及其选择性。
- Nitrobenzene was electroreduced to azobenzene in ionic liquid BMimBF_4-H_2O on Pt electrode at room temperature. 采用循环伏安法和恒电位电解法研究了离子液体BMimBF_4-H_2O中硝基苯在微铂电极上的电还原特性.
- The current applications of microwave and ionic liquid in multicomponent reactions was illustrated. 综述了近些年来微波和离子液体在多组分缩合反应中的应用。
- Properties and function of ionic liquids in nano-scale. 纳米尺度离子液体的性质和功能。
- Classification of ionic liquids is based on their ionic structures. 离子液体阴阳离子根据其结构进行分类。
- The perspectives on biocatalysis in ionic liquids is provided. 对离子液体中的生物催化进行了展望。
- The LUMO of cations interact with the HOMO of anions to form ionic liquid molecules. 烷基季铵盐阳离子的LUMO与阴离子的HOMO相互作用形成离子液体。
- Bismuth sulfide nanorods were synthesized in ionic liquid using bismuth nitrate and thiourea as precursor. 采用硝酸铋和硫脲为先驱原料,以离子液为反应介质,合成了硫化铋单晶纳米棒。
- Using the good adsorption performance and active groups of the carrier, the supported ionic liquid could be made. 利用载体良好的吸附性能和活性基团可制得固定化离子液体。
- Based on the synthetic technology of ionic liquids, the antistatic fabrics were produced by the reaction of functional ionic compounds with the surface of fabrics. 本技术以离子液体合成技术为基础,将具有反应官能基之离子结构化合物与织物表面进行反应,制作具有抗静电效果之织物。
- The surface of the liquid gradually crusted over. 液体表面渐渐地结了一层皮。