CAS: 12022-95-6; Iron Silicide

该化合物是一种由铁和硅组成的化合物,其特点是金属特性和晶体结构,一般是灰或黑固体,以高熔点和良好的导电性而著称,在各种工业应用中,特别是在电子和冶金方面有用. FeSi 表现出一种复杂的阶段行为,根据温度和成分的不同,不同吸附器和结构不同.它经常被用作钢制成的脱氧剂和合金元素,以改善钢和钢的机械特性.此外,铁杀菌剂可以以各种形式形成,包括不固定和晶体级阶段,可以影响其物理和化学特性.由于半导体技术在电子装置中的潜在应用,该化合物对半导体技术也感兴趣.然而,处理Fesi需要谨慎,因为它可以与湿度和空气发生反应,导致潜在危险的副产品形成.

结构式图片

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    专利信息


    专利号:US-7247346-B1
    优先权日:2002-08-28
    标 题:Combinatorial fabrication and high-throughput screening of optoelectronic devices
    发明人:SAGER BRIAN M; ROSCHEISEN MARTIN R; PETRITSCH KLAUS
    权利人:NANOSOLAR INC
    摘要:Methods and apparatus for the rapid and parallel synthesis of optoelectronic cell devices and for the high-throughput screening of such devices for useful properties are disclosed. The methods comprise the parallel synthesis of arrays of optoelectronic devices fabricated within an addressable sample-holding matrix. Each optoelectronic device is created and tested within an addressable sample-holder in the fabrication device.

    专利号:US-7767627-B1
    优先权日:1994-10-18
    标 题:Combinatorial synthesis of inorganic or composite materials
    发明人:GOLDWASSER ISY; ROSS DEBRA A; SCHULTZ PETER G; XIANG XIAO-DONG; BRICENO GABRIEL; SUN XIAO-DONG; WANG KAI-AN
    权利人:SYMYX SOLUTIONS INC; UNIV CALIFORNIA
    摘要:Methods and apparatus for the preparation and use of a substrate having an array of diverse materials in predefined regions thereon. A substrate having an array of diverse materials thereon is generally prepared by delivering components of materials to predefined regions on a substrate, and simultaneously reacting the components to form at least two materials or, alternatively, allowing the components to interact to form at least two different materials. Materials which can be prepared using the methods and apparatus of the present invention include, for example, covalent network solids, ionic solids and molecular solids. More particularly, materials which can be prepared using the methods and apparatus of the present invention include, for example, inorganic materials, intermetallic materials, metal alloys, ceramic materials, organic materials, organometallic materials, nonbiological organic polymers, composite materials (e.g., inorganic composites, organic composites, or combinations thereof), etc. Once prepared, these materials can be screened for useful properties including, for example, electrical, thermal, mechanical, morphological, optical, magnetic, chemical, or other properties. Thus, the present invention provides methods for the parallel synthesis and analysis of novel materials having useful properties.

    专利号:US-5772728-A
    优先权日:1994-03-30
    标题 :Method for upgrading of silicon-containing residues obtained after leaching of copper-containing residues from chlorosilane synthesis
    发明人:EIKELAND INGER JOHANNE; GUNDERSEN ROALD; JENSEN RAGNHILD
    权利人:ELKEM MATERIALS
    摘要:The present invention relates to a method for upgrading silicon-containing solid residues obtained after leaching of copper from copper-containing residues from direct synthesis of organochlorosilanes. Solid residue, optionally together with an oxidation agent, is supplied to a smelting furnace where the residues are melted and form a molten metallic phase substantially containing silicon and a calcium silicate slag and tapping of the molten metallic phase and an inert slag from the smelting furnace.

    专利号:US-6004617-A
    优先权日:1994-10-18
    标题 :Combinatorial synthesis of novel materials
    发明人:SCHULTZ PETER G; XIANG XIAODONG; GOLDWASSER ISY
    权利人:UNIV CALIFORNIA; SYMYX TECHNOLOGIES INC
    摘要:Methods and apparatus for the preparation and use of a substrate having an array of diverse materials in predefined regions thereon. A substrate having an array of diverse materials thereon is generally prepared by delivering components of materials to predefined regions on a substrate, and simultaneously reacting the components to form at least two materials. Materials which can be prepared using the methods and apparatus of the present invention include, for example, covalent network solids, ionic solids and molecular solids. More particularly, materials which can be prepared using the methods and apparatus of the present invention include, for example, inorganic materials, intermetallic materials, metal alloys, ceramic materials, organic materials, organometallic materials, non-biological organic polymers, composite materials (e.g., inorganic composites, organic composites, or combinations thereof), etc. Once prepared, these materials can be screened for useful properties including, for example, electrical, thermal, mechanical, morphological, optical, magnetic, chemical, or other properties. Thus, the present invention provides methods for the parallel synthesis and analysis of novel materials having useful properties.

    专利号:US-6759502-B1
    优先权日:2001-03-26
    标 题:Synthesis of hyperbranched organometallic polymers and their use as precursors to advanced ceramic materials
    发明人:TANG BEN ZHONG; XU KAITIAN; PENG HAN; LUO JINGDONG; ZHANG XIXIANG; SUN QUNHUI; LAM WING YIP; CHA JOHN A K
    权利人:UNIV HONG KONG SCIENCE & TECHN
    摘要:Hyperbranched organometallic polymers, including poly [1,1′-ferrocenylenesilynes], poly [1,1′-ferrocenylene-(alkyl)silynes], poly [1,1′-ferrocenylene(alkenyl)silynes] and poly [1,1′-ferrocenylene(aromatic)silynes], are useful as precursors to certain ceramic materials. Processes for the preparation of such polymers and the preparation of ceramic materials from such polymers are described, as are the resulting ceramic materials and their use as ferromagnetic materials and electrically conductive materials.

    专利号:US-9938144-B2
    优先权日:2014-08-19
    标 题:Process for producing synthesis gas and electrical energy
    发明人:MAASS HANS-JURGEN; MACHHAMMER OTTO; BODE ANDREAS; KOLIOS GRIGORIOS
    权利人:LINDE AG; BASF SE
    摘要:The invention relates to a process for producing synthesis gas, in which carbon and hydrogen are obtained from hydrocarbon by thermal decomposition. At least a portion of the carbon obtained by the thermal decomposition is reacted, and at least a portion of the hydrogen obtained is reacted with carbon dioxide by a reverse water-gas shift reaction to give carbon monoxide and water. Carbon obtained by the thermal hydrocarbon decomposition is used as fuel in a power plant operation wherein the carbon is combusted to produce electrical power, and carbon dioxide formed in the combustion of the carbon is used in the reverse water-gas shift reaction.

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