CAS: 3005-32-1; Bromo(Triphenyl)Germane

该化合物是一种有机金属化合物,其组成地点是连接一个溴原子和三个苯基组的中心,这种试剂主要用于有机合成和材料科学,作为构建含框架的多用途中间体,其主要优点包括:在标准条件下保持稳定,便于处理和储存,在交叉反应中具有反应性能,能够精确地发挥作用;溴代基提供反应场所,供进一步修改,而苯基组则增加有机溶剂的溶解性.这些特性使得这种试剂在催化,聚合化学和半导体研究中具有价值,需要受控的聚种.

结构式图片

欧盟法规

ECHA物质C&L通报

上下游产品

tetraphenylgermane bromine germanium bromobenzene4-triphenylgermanyl-aniline (4-chloro-phenyl)-triphenyl germane triphenyl-trityl germane triphenyl-triphenylgermanyl-silane

合成工艺路线路线简述

    📜Aminotriphenylgermane 以 乙醚,氨 作为反应溶剂,化学反应生成 三苯基溴化锗
    参考文献:Gmelin Handbuch Der Anorganischen Chemie,Gmelin Handbook: Ge: Mvol.,20,Page 53-57
    标题:Gmelin Handbuch Der Anorganischen Chemie,Gmelin Handbook: Ge: Mvol.,20,Page 53-57

    海关参考信息

    专利信息


    专利号:US-4565896-A
    优先权日:1984-10-22
    标 题 :Process for low pressure synthesis of ethylene glycol from synthesis gas
    发明人:KNIFTON JOHN F; DURANLEAU ROGER G
    权利人:TEXACO INC
    摘要:This invention relates to the manufacture of ethylene glcyol and more particularly to a low pressure process for making ethylene glycol comprising reacting synthesis gas, i.e. a mixture of carbon monoxide and hydrogen, plus formaldehyde in the presence of a homogeneous liquid catalyst containing an effective amount of cobalt-containing compound and a silicon or germanium-containing promoter and a solvent at a temperature of at least 50 DEG C. and a pressure of at least 500 psi wherein said ethylene glycol product separates as a separate liquid phase from the solvent.

    专利号:US-4609768-A
    优先权日:1984-10-22
    标题 :Process for synthesis of ethylene glycol from synthesis gas plus 1,3-dioxolane using 1,3-dioxolane as a solvent
    发明人:KNIFTON JOHN F; LIN JIANG-JEN; GRICE NEAL J
    权利人:TEXACO INC
    摘要:This invention relates to the manufacture of ethylene glycol and more particularly to a low pressure process for making ethylene glycol comprising reacting synthesis gas, i.e. a mixture of carbon monoxide and hydrogen, plus 1,3-dioxolane in the presence of a homogenous liquid catalyst containing an effective amount of cobalt-containing compound, a silane or germane-containing promoter dispersed in a dioxolane solvent at a temperature of at least 50° C. and a pressure of at least 500 psi.

    专利号:US-4568780-A
    优先权日:1984-10-22
    标 题 :Process for low pressure synthesis of ethylene glycol from synthesis gas plus 1,3-dioxolane
    发明人:KNIFTON JOHN F
    权利人:TEXACO INC
    摘要:This invention relates to the manufacture of ethylene glycol and more particularly to a low pressure process for making ethylene glycol comprising reacting synthesis gas, i.e. a mixture of carbon monoxide and hydrogen, plus 1,3-dioxolane in the presence of a homogenous liquid catalyst containing an effective amount of cobalt-containing compound and a silane or germane-containing promoter dispersed in a hydrocarbon solvent at a temperature of at least 50 DEG C. and a pressure of at least 500 psi, where the particular solvents used allow the desired product to be separated from the reaction mixture by phase separation.

    专利号:US-4409405-A
    优先权日:1982-05-13
    标题:Production of ethanol from methanol and synthesis gas
    发明人:LIN JIANG-JEN; KNIFTON JOHN F
    权利人:TEXACO INC
    摘要:Ethanol is formed by contacting a mixture of carbon monoxide, hydrogen and methanol with a catalyst comprising a cobalt-containing compound and a germanium-containing compound, such as dicobalt octacarbonyl and triphenylgermanium hydride in the presence of an inert, oxygenated hydrocarbon solvent at a temperature of about 50 DEG to about 350 DEG C. and at a pressure of about 500 psig or greater.

    专利号:EP-0134324-B1
    优先权日:1983-08-15
    标 题 :Production of ethanol from methanol and synthesis gas

    专利号:EP-0134324-A1
    优先权日:1983-08-15
    标 题 :Production of ethanol from methanol and synthesis gas

    供应商参考报价(招募中)

    品牌试剂参考报价(招募中)

    📌 第三方产品分析报告

    ✅ COA系统入驻 | 共享模式

    合成参考文献


    摘要:Marschner, C., Science of Synthesis Knowledge Updates, (2020) 3, 115.
    摘要:Spivey, A. C.; Tseng, C.-C., Science of Synthesis Knowledge Updates, (2010) 1, 1.
    摘要:Aitken, R. A., Science of Synthesis Knowledge Updates, (2018) 3, 348.
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