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论新配料程序在高炉生出中的应用
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作者 石金年 《甘肃科技》 2005年第12期30-32,共3页
介绍一种全新的高炉配料程序,通过画面设定料单和仓号,由下位程序自动循环执行,并通过画面监视程序运行状况,最终达到自动配料、运行稳定、操作便捷的目的。下位软件采用CON-CEPT,上位软件采用IFIX。
关键词 料单程序 料种 仓号 步进 车次 周期
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Liquid-phase epitaxy of metal organic framework thin films 被引量:5
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作者 FISCHER Roland A. 《Science China Chemistry》 SCIE EI CAS 2011年第12期1851-1866,共16页
Metal-organic framework(MOF) thin films are multilayer materials ranging from nanometers to micrometers in thickness,physically or chemically adhesive to a(functionalized) substrate and,in an ideal case,exhibiting low... Metal-organic framework(MOF) thin films are multilayer materials ranging from nanometers to micrometers in thickness,physically or chemically adhesive to a(functionalized) substrate and,in an ideal case,exhibiting low roughness and high homogeneity.Various innovative approaches have been developed for MOF thin film fabrication.Among these advanced materials,surface-attached metal-organic frameworks(SURMOFs) are an important class of MOF films.SURMOFs,fabricated in a step-by-step liquid phase epitaxial(LPE) fashion by alternating deposition of metal and organic linker precursors on a functionalized substrate,for example,thiolate-based self-assembled monolayers(SAMs),have already exhibited their utility in both research and potential applications.SURMOFs combine surface science and the chemistry of MOFs,possessing the following unique advantages that cannot be accessed through other methods:(i) precisely controlling thickness,roughness and homogeneity as well as growth orientation,(ii) studying of MOF growth mechanism,(iii) modifying/tailoring MOFs' structures during the SURMOF growth and thus creating customizable properties,and(iv) existing in the form of thin film/membrane for direct applications,for example,as sensors.This review discusses the oriented and crystalline SURMOFs fabricated by LPE approach,covering their preparation,growth mechanism,and characterization methodology as well as applications based upon the most newly updated knowledge. 展开更多
关键词 coordination chemistry metal-organic frameworks (MOFs) liquid phase epitaxy step-by-step approach surface science thin film
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