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CAS号111-27-3 正己醇 | CAS号19779-06-7 sodium,hexan-1-olate合成工艺路线路线简述
- 合成目标产物 Trihexyl Phosphate 主要起始原料 1-Hexanol
- (文献来源)合成步骤主要原料 1-Hexanol
正己醇置于吡啶,三氯氧磷体系中,用 正庚烷 用作溶剂,化学反应生成磷酸三己酯
参考文献:磷酸三烷基酯在超临界二氧化碳中的溶解度的实验测定和模型相关性
标题:磷酸三烷基酯在超临界二氧化碳中的溶解度的实验测定和模型相关性
摘要:研发了一系列磷酸三烷基酯在超临界二氧化碳中的溶解度.溶解度的测定使用动态流动法进行.进行了测量...
Doi:10.1039/c6Ra10897K
海关参考信息
- 2905121000-正丙醇
2905130000-正丁醇
2919900020-磷酸三丁酯
2920210000-亚磷酸二甲酯 - 💡 提示:海关信息按照顺序优先匹配,如需确认的海关信息,请参考相关资料。
- 详情请参考:📖 海关编码查询和海关进出口税则
专利信息
专利号:US-7018987-B1
优先权日:1998-01-09
标 题:Synthesis of combretastatin A-4 prodrugs and trans-isomers thereof
专利号:WO-2024180124-A1
优先权日:2023-02-28
标 题:Cadmium and/or zinc chalcogenide nanoparticles as catalyst material for co2 reduction
发明人:NIEHAUS JAN; ZELLER SONJA; BECKER SÖREN; GAWEL ALINA; JUNGE PURING KAI; APFEL ULF-PETER
权利人:FRAUNHOFER GES FORSCHUNG
摘要:The present invention relates to an electrode for the reduction of carbon dioxide CO2, for example to carbon monoxide CO and/or synthesis gas CO / H2, the electrode containing, as a catalyst, cadmium and/or zinc chalcogenide nanoparticles, to an electrochemical process for reducing carbon dioxide CO2, for example to carbon monoxide CO and/or synthesis gas CO / H2, by means of an electrode which contains cadmium and/or zinc chalcogenide nanoparticles, and to the use of cadmium and/or zinc chalcogenide nanoparticles as a catalyst in an electrode for the electrochemical reduction of reduced species, for example carbon dioxide CO2 to carbon monoxide CO and/or synthesis gas CO / H2.
专利号:US-2012183866-A1
优先权日:2009-07-29
标题:Fluorinated Arylboron Oxalate as Anion Receptors and Additives for Non-Aqueous Battery Electrolytes
发明人:LEE HUNG SUI; YANG XIAO-QING; NAM KYUNG-WAN; WANG XIAOJIAN
权利人:LEE HUNG SUI; YANG XIAO-QING; NAM KYUNG-WAN; WANG XIAOJIAN; BROOKHAVEN SCIENCE ASS LLC
摘要:The present invention relates to electrochemical storage devices containing a non-aqueous lithium based electrolyte with high ionic conductivity, low impedance, and high thermal stability. More particularly, this invention relates to the design, synthesis and application of novel fluorinated arylboron oxalate based compounds which act as anion receptors and/or additives for non-aqueous batteries. When used as an anion receptor for non-aqueous battery electrolytes, the fluorinated arylboron oxalate enhances conductivity, lithium ion transference number and Solid Electrolyte Interface (SEI) formation capability during the formation cycling.