CAS: 3955-58-6; 1-Ethyl-1-Phenylthiourea

该化合物是一种有机化合物,其特征是硫尿素功能组,由硫尿素(C=S)组成,与一个矿质结合,该化合物一般是白到白的晶状固体,可溶于乙醇和丙酮等有机溶剂,但水溶性有限.N-乙酰N-苯基尿拉因其在各种化学反应中作为试剂的作用而著称,特别是在其他有机化合物合成和生物系统中作为潜在抑制剂的作用而著称.它具有硫尿素的典型特性,包括形成氢结和参加核毒反应的能力.此外,该化合物还因其生物活动进行了研究,包括潜在的抗菌素和抗苯丙胺特性.在处理该物质时,应当采取安全防范措施,因为接触该物质可能会对健康造成危害.

结构式图片

相似化合物

4104-75-0 3394-70-5 2741-06-2

欧盟法规

C&L通报

上下游产品

1-ethyl-1-phenyl-dithiobiuret N'-benzoyl-N-ethyl-N-phenylthiourea N-Aethyl-N-phenyl-N'-(tert.-butyl)-thioharnstoff triphenylphosphine-thi°Cyanogen N,N''-diethyl-N,N''-diphenyl-μ-disulfido-dicarboxamidine; dihydrobromideN,N''-diethyl-N,N''-diphenyl-μ-disulfido-dicarboxamidine; dihydrobromide N-ethyl-anilino)-thiazole-4,5-dione2-(N-ethyl-anilino)-thiazole-4,5-dione N-ethyl-anilino)-thiazol-4-yl]-17α-hydroxy-androst-4-en-3-one17β-[2-(N-ethyl-anilino)-thiazol-4-yl]-17α-hydroxy-androst-4-en-3-one N-ethyl-anilino)-N,N'-diphenyl-thiazole-4,5-diylidenediamine2-(N-ethyl-anilino)-N,N'-diphenyl-thiazole-4,5-diylidenediamine

合成工艺路线路线简述

  • 合成目标产物 1-Ethyl-3-Phenyl-2-Thiourea 主要起始原料 Potassium Thiocyanate And N-Ethylaniline
  • (文献来源)合成步骤主要原料 Potassium Thiocyanate 和 N-Ethylaniline
📜1-Ethyl-1-Phenyl-Dithiobiuret置于一水合肼体系中,化学反应生成 N-苯基-N'-乙基硫脲
参考文献:Fromm Et Al.,Justus Liebigs Annalen Der Chemie,1924,Vol. 437,P. 115
标题:Fromm Et Al.,Justus Liebigs Annalen Der Chemie,1924,Vol. 437,P. 115

海关参考信息

专利信息


专利号:US-2008004415-A1
优先权日:2004-05-03
标题 :Non-linear optically active molecules, their synthesis, and use
发明人:MCGINNISS VINCENT D; RISSER STEVEN M; DROTLEFF ELIZABETH; JIANG EDWARD; SPAHR KEVIN B
权利人:OPTIMER PHOTONICS INC
摘要:In one aspect, the present invention provides a hyperpolarizable organic chromophore. The chromophore is a nonlinear optically active compound that includes a Ï€-donor conjugated to a Ï€-acceptor through a Ï€-electron conjugated bridge. In other aspects of the invention, donor structures and acceptor structures are provided. In another aspect of the invention, a chromophore-containing polymer is provided. In one embodiment, the chromophore is physically incorporated into the polymer to provide a composite. In another embodiment, the chromophore is covalently bonded to the polymer, either as a side chain polymer or through crosslinking into the polymer. In other aspects, the present invention also provides a method for making the chromophore, a method for making the chromophore-containing polymer, and methods for using the chromophore and chromophore-containing polymer.

专利号:US-2012059163-A1
优先权日:2005-04-28
标题 :Non-linear opticaly active molecules, their synthesis, and use
发明人:MCGINNISS VINCENT D; RISSER STEVEN M; DROTLEFF ELIZABETH; JIANG EDWARD; SPAHR KEVIN B
权利人:MCGINNISS VINCENT D; RISSER STEVEN M; DROTLEFF ELIZABETH; JIANG EDWARD; SPAHR KEVIN B; OPTIMER PHOTONICS INC
摘要:In one aspect, the present invention provides a hyperpolarizable organic chromophore. The chromophore is a nonlinear optically active compound that includes a Ï€-donor conjugated to a Ï€-acceptor through a Ï€-electron conjugated bridge. In other aspects of the invention, donor structures and acceptor structures are provided. In another aspect of the invention, a chromophore-containing polymer is provided. In one embodiment, the chromophore is physically incorporated into the polymer to provide a composite. In another embodiment, the chromophore is covalently bonded to the polymer, either as a side chain polymer or through crosslinking into the polymer. In other aspects, the present invention also provides a method for making the chromophore, a method for making the chromophore-containing polymer, and methods for using the chromophore and chromophore-containing polymer.

专利号:US-2899426-A
优先权日:
标题 :Synthesis of l

专利号:CN-103073522-A
优先权日:2013-01-14
标 题 :Synthesis method of 2,2'-azino-bis(3-ethyl-benzothiazole-6-sulfonic acid) diammonium salt

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


参考文献:10.1016/j.bbrc.2023.08.050
摘要:Ikeda Y, Davis MI, Sumita K, Zheng Y, Kofuji S, Sasaki M, Hirota Y, Pragani R, Shen M, Boxer MB, Takeuchi K, Senda T, Simeonov A, Sasaki AT. Multimodal action of KRP203 on phosphoinositide kinases in vitro and in cells. Biochemical and Biophysical Research Communications. 2023 Oct;679():116–21. doi: 10.1016/j.bbrc.2023.08.050.
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