- 英文名称N,N,N-Trimethylbenzenaminium (Chloride)
- 中文名称N,N,N-三甲基苯胺氯化物
- IUPAC名称N,N,N-trimethylbenzenaminium chloride
- 其它别名Benzenaminium, N,N,N-Trimethyl-, Chloride; Phenyl Trimethyl Ammonium Chloride; N,N,N-Trimethylbenzenaminium; Phenyltrimethyl Ammonium Chloride; N,N,N-Trimethylbenzenaminium
- CAS编号138-24-9
- MFCD编号:MFCD00011790
- EINECS号:205-319-0
- FDA UNII编号:1886BWR70S
- 分子式:C9H14ClN
- 分子量:171.67
- 产品CID: 595662
- 产品分类有机原料→分子砌块→芳环类化合物→苯类化合物
相似化合物
16056-11-4 1899-02-1 100-22-1欧盟法规
统一分类与标签REACH注册ECHA物质工作场所安全标识要求ECHA物质C&L通报REACH预注册废弃物危险特性清单上下游产品
CAS号121-69-7 N,N-二甲基苯胺 | CAS号333-27-7 三氟甲烷磺酸甲酯 | CAS号98-04-4 苯基三甲基碘化铵 | CAS号100-61-8 N-甲基苯胺 | CAS号74-87-3 氯甲烷 | CAS号475-81-0 (+)-海罂粟碱 | CAS号90806-58-9 5-甲氧基异喹啉 | CAS号459-60-9 4-氟苯甲醚 | CAS号121-69-7 N,N-二甲基苯胺 | CAS号20883-98-1 3-(2-羟基苯基)-丙烯酸甲酯 | CAS号4358-87-6 DL-扁桃酸甲酯 | CAS号110-82-7 环己烷 | CAS号593-81-7 三甲胺盐酸盐 | CAS号1624-62-0 雌酮-3-甲醚 | CAS号2216-69-5 1-甲氧基萘苯基三甲基碘化铵置于silver(I) Chloride体系中,化学反应生成苯基三甲基氯化铵
参考文献:Ley; Ulrich,Chemische Berichte,1909,Vol. 42,P. 3442,3446
标题:Ley; Ulrich,Chemische Berichte,1909,Vol. 42,P. 3442,3446
专利信息
专利号:US-2023286918-A1
优先权日:2020-07-02
标 题:Manufacturing process for 3,5-dichloropicolinonitrile for synthesis of vadadustat
发明人:JURKAUSKAS VALDAS; JUNG YOUNG CHUN; KWON TAESOO; KANNAN ARUNACHALAM; GONDI VIJAYA BHASKER
权利人:AKEBIA THERAPEUTICS INC
摘要:Disclosed herein are methods and processes of preparing vadadustat or a pharmaceutically acceptable salts thereof, and intermediates (e.g., a compound of Formula (I), (I-F), (II), or (IV), or a pharmaceutically acceptable salts thereof) useful for the synthesis of vadadustat.
专利号:US-2005087449-A1
优先权日:2002-03-04
标题:Electrochemical synthesis of ammonia
发明人:DENVIR ADRIAN; MURPHY OLIVER J; CISAR ALAN; ROBERTSON PRISCILLA; USELTON KYLE
摘要:A method for electrochemical synthesis of ammonia gas comprising providing an electrolyte between an anode and a cathode, providing hydrogen gas to the anode, oxidizing negatively charged nitrogen-containing species present in the electrolyte at the anode to form an adsorbed nitrogen species, and reacting the hydrogen with the adsorbed nitrogen species to form ammonia. Preferably, the hydrogen gas is provided to the anode by passing the hydrogen gas through a porous anode substrate. It is also preferred to produce the negatively charged nitrogen-containing species in the electrolyte by reducing nitrogen gas at the cathode. However, the negatively charged nitrogen-containing species may also be provided by supplying a nitrogen-containing salt, such as lithium nitride, into the molten salt electrolyte mixture in a sufficient amount to provide some or all of the nitrogen consumed in the production of ammonia.
专利号:US-6712950-B2
优先权日:2002-03-04
标 题 :Electrochemical synthesis of ammonia
发明人:DENVIR ADRIAN; MURPHY OLIVER J; CISAR ALAN; ROBERTSON PRISCILLA; USELTON KYLE
权利人:LYNNTECH INC
摘要:A method for electrochemical synthesis of ammonia gas comprising providing an electrolyte between an anode and a cathode, providing hydrogen gas to the anode, oxidizing negatively charged nitrogen-containing species present in the electrolyte at the anode to form an adsorbed nitrogen species, and reacting the hydrogen with the adsorbed nitrogen species to form ammonia. Preferably, the hydrogen gas is provided to the anode by passing the hydrogen gas through a porous anode substrate. It is also preferred to produce the negatively charged nitrogen-containing species in the electrolyte by reducing nitrogen gas at the cathode. However, the negatively charged nitrogen-containing species may also be provided by supplying a nitrogen-containing salt, such as lithium nitride, into the molten salt electrolyte mixture in a sufficient amount to provide some or all of the nitrogen consumed in the production of ammonia.
专利号:US-6881308-B2
优先权日:2002-03-04
标 题 :Electrochemical synthesis of ammonia
发明人:DENVIR ADRIAN J; MURPHY OLIVER J; CISAR ALAN J; ROBERTSON PRISCILLA; USELTON KYLE
权利人:LYNNTECH INC
摘要:A method for electrochemical synthesis of ammonia gas comprising providing an electrolyte between an anode and a cathode, providing hydrogen gas to the anode, oxidizing negatively charged nitrogen-containing species present in the electrolyte at the anode to form an adsorbed nitrogen species, and reacting the hydrogen with the adsorbed nitrogen species to form ammonia. Preferably, the hydrogen gas is provided to the anode by passing the hydrogen gas through a porous anode substrate. It is also preferred to produce the negatively charged nitrogen-containing species in the electrolyte by reducing nitrogen gas at the cathode. However, the negatively charged nitrogen-containing species may also be provided by supplying a nitrogen-containing salt, such as lithium nitride, into the molten salt electrolyte mixture in a sufficient amount to provide some or all of the nitrogen consumed in the production of ammonia.
专利号:US-5703248-A
优先权日:1990-05-22
标 题:Process for the selective trihalogenation of ketones useful as intermediates in the synthesis of thiophenes
发明人:ROMMEL JEFFREY S; TRAXLER JAMES T; BOETTCHER RICHARD R
摘要:The present invention concerns a novel process for the selective trihalogenation of ketones employing organic halogen salts.
专利号:EP-0379423-B1
优先权日:1989-01-16
标题:Process for the preparation of phenylpropionic acid
摘要:The invention relates to the field of organic chemistry, and more specifically to the synthesis of phenylpropionic acids. Its specific subject is a new process for the preparation of 2-[4-(R-amino)phenyl]propionic acids of general formula I which consists in subjecting a 2-(4-aminophenyl)propionic derivative of formula II in which R1 is hydrogen or a C1-C6 alkyl radical, to the action of an alkylating agent in a heterogeneous phase in the presence of a phase transfer catalyst and a basic agent in an aqueous medium. The acids obtained are active principles of medicaments.