相似化合物
13455-29-3欧盟法规
ECHA物质ECHA物质C&L通报REACH预注册📜碘化铵,一氧化碳 反应生成碘化钴(II)
参考文献:Tanno Kazuo; Komani Yumiko; Kurosawa Fumio; Saito Shiro,Inform. Mater. Energy Theory Life,54,(1986) N 6,490-497
标题:Tanno Kazuo; Komani Yumiko; Kurosawa Fumio; Saito Shiro,Inform. Mater. Energy Theory Life,54,(1986) N 6,490-497
专利信息
专利号:US-7615169-B2
优先权日:2004-09-20
标题 :Method for synthesis of colloidal nanoparticles
发明人:STROUSE GEOFFREY FIELDING; GERBEC JEFFREY A; MAGANA DONNY
权利人:UNIV CALIFORNIA
摘要:A method for synthesis of high quality colloidal nanoparticles using comprises a high heating rate process. Irradiation of single mode, high power, microwave is a particularly well suited technique to realize high quality semiconductor nanoparticles. The use of microwave radiation effectively automates the synthesis, and more importantly, permits the use of a continuous flow microwave reactor for commercial preparation of the high quality colloidal nanoparticles.
专利号:US-7927516-B2
优先权日:2004-09-20
标题 :Method for synthesis of colloidal nanoparticles
发明人:STROUSE GEOFFREY F; GERBEC JEFFREY A; MAGANA DONNY
权利人:UNIV CALIFORNIA
摘要:A method for synthesis of high quality colloidal nanoparticles using comprises a high heating rate process. Irradiation of single mode, high power, microwave is a particularly well suited technique to realize high quality semiconductor nanoparticles. The use of microwave radiation effectively automates the synthesis, and more importantly, permits the use of a continuous flow microwave reactor for commercial preparation of the high quality colloidal nanoparticles.
专利号:US-8410320-B2
优先权日:2010-12-07
标 题 :Method for synthesis of secondary alcohols
发明人:CHENG CHIEN-HONG; KARTHIKEYAN JAGANATHAN; HUANG PANG-CHI
权利人:CHENG CHIEN-HONG; KARTHIKEYAN JAGANATHAN; HUANG PANG-CHI; NAT UNIV TSING HUA
摘要:A method for synthesis of secondary alcohols is provided for pharmaceutical secondary alcohol by addition of organoboronic acids with aldehydes in presence of the cobalt ion and bidentate ligands as the catalyst. In addition, an enantioselective synthesis method for secondary alcohols is also herein provided in the present invention. The present invention has advantages in using less expensive cobalt ion and commercially available chiral ligands as the catalyst, wide scope of organoboronic acids and aldehydes compatible with this catalytic reaction and achieving excellent yields and/or enantiomeric excess.
专利号:US-3872101-A
优先权日:1969-04-11
标题:Synthesis of {60 , {62 -unsaturated compounds
发明人:SIDDALL JOHN E; FRIED JOHN H
权利人:ZOECON CORP
摘要:Stereospecific synthesis of Alpha , Beta -ethylenically unsaturated compounds by the reaction of an organo-copper or organo-manganese reagent with an Alpha , Beta -acetylenically unsaturated compound at a temperature of -40*C or less.
专利号:US-11713329-B2
优先权日:2018-12-10
标 题 :Intermediates useful in the preparation of halichondrin compounds and methods for preparing the same
发明人:XU WEIPING
权利人:BEIJING TIENYI LUFU PHARMATECH CO LTD
摘要:The invention relates to intermediates useful in the preparation of halichondrin compounds, methods for preparing the same and use thereof, such as halichondrins, eribulin, or their analogs. The intermediates, the methods and use thereof are used for the synthesis of the C20-C26 fragment of halichondrin compounds. The raw materials in the synthetic route of the invention are cheap and easily obtained, the sources and the qualities of the raw materials are reliable. The choice of the methods useful in the synthesis of chiral central structures are based on the structural characteristics of the reactants, thus effectively improving the synthesis efficiency, reducing the difficulties and risks of product quality control, and avoiding the use of highly toxic and expensive organotin catalysts to significantly decrease costs and improve environmental friendliness.
专利号:US-12325643-B1
优先权日:2024-10-30
标 题 :Synthesis of cobalt oxide nanoparticles using L-valine as a fuel
发明人:AHMED EHAB ABDELHAMED ABDELRAHMAN
权利人:IMAM MOHAMMAD IBN SAUD ISLAMIC UNIV
摘要:A method for synthesizing cobalt oxide nanoparticles includes mixing an aqueous solution of a cobalt precursor and L-valine to obtain a reaction mixture and heating up the reaction mixture to temperature of at least 100° C. to obtain a dry powder. The method further includes calcining the dry powder to obtain the cobalt oxide nanoparticles. The cobalt oxide nanoparticles have an average particle size of 200 nm or less. The cobalt oxide nanoparticles are substantially spherical and include mesopores having a total pore volume of 0.1 to 0.5 cm3/g.