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新型环保非织造复合材料—负离子布
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作者 刘红国 卢翠璇 《非织造布》 2003年第3期25-26,共2页
介绍了新型环保非织造复合材料—负离子布产品开发研制的过程及其工艺技术。指出了随着人们对环境保护意识的不断提高,这一新型非织造材料的问世将会带来很大的社会效益和经济效益,具有良好的市场应用前景。
关键词 环保非织造复合材料 负离子布 产品开发 工艺技术 非织造
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空调器“空气清洁片” 被引量:1
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作者 刘建国 卢翠璇 《非织造布》 2003年第2期47-47,28,共2页
关键词 空调器 YTS负离子无纺 空气净化 滤网 非织造 过滤材料 研制
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All-atom and united-atom simulations of guanidinium-based ionic liquids 被引量:2
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作者 LIU XiaoMin ZHANG XiaoChun +2 位作者 ZHOU GuoHui YAO XiaoQian ZHANG SuoJiang 《Science China Chemistry》 SCIE EI CAS 2012年第8期1573-1579,共7页
Ionic liquids (ILs) have been widely used in separation, catalysis, electrochemistry, etc., and one of the most outstanding characteristics is that ILs can be tailored and tuned for specific tasks. In order to design ... Ionic liquids (ILs) have been widely used in separation, catalysis, electrochemistry, etc., and one of the most outstanding characteristics is that ILs can be tailored and tuned for specific tasks. In order to design and make better use of ionic liquids, the structures and properties relationship is indispensable. Both molecular dynamics and Monte Carlo simulations have been proved useful to understand the behavior of molecules at the microscale and the properties of the system. However, the quality of such simulations depends on force field parameters describing the interactions between atoms. All-atom (AA) or the united-atom (UA) force fields will be chosen because of the demand for more exact results or the lower computational cost, respectively. In order to make a systematic comparison of the two force fields, molecular simulations for four kinds of acyclic guanidinium-based ionic liquids (cations: (R2N)2C=N+<, anion: nitric or perchloric acid) were performed based on the AA and the UA force fields in this work. AA force field parameters were derived from our previous work (Fluid Phase Equilib., 2008, 272: 1-7), and the UA parameters were proposed in this work. Molecular dynamics simulation results for the AA and UA force fields were compared. Simulation densities are very similar to each other. Center of mass radial distribution functions (RDFs), site to site RDFs and spatial distribution functions (SDFs) were also investigated to depict the microscopic structures of the ILs. 展开更多
关键词 all-atom force field united-atom force field molecular simulation ionic liquids
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