CAS: 3878-45-3; Triphenylphosphine Sulfide

该化合物是一种有机磷化合物,其特点是稳定的晶体结构和高热稳定性,在协调化学和有机合成的试剂中广泛使用,特别是在核生殖器替代和过渡性金属催化反应中,硫化物强化了其电子捐赠特性,使其在稳定金属复合体和促进磷基转化方面有效发挥作用;极地溶剂中的低溶性以及环境中的氧化性阻力进一步增强了其在受控反应环境中的效用;三联苯磷硫化物因其在专门合成应用方面的一贯性能而受到重视,包括不对称催化和材料科学研究.

结构式图片

欧盟法规

ECHA物质ECHA物质C&L通报REACH预注册

上下游产品

CAS号3878-44-2 硒化三苯膦 | CAS号79156-16-4 methyldiphenyla... | CAS号829-85-6 二苯基膦 | CAS号59862-73-6 N-methyl-1-(4-n... | CAS号555-16-8 对硝基苯甲醛 | CAS号791-28-6 三苯基氧化膦 | CAS号2129-89-7 甲基二苯基氧化膦 | CAS号2049-55-0 三苯基膦硼烷 | CAS号35262-43-2 methy benzyl bu... | CAS号22884-29-3 异丁基三苯基溴化膦

合成工艺路线路线简述

    (Methylselanyl)Triphenylphosphonium Trifluoromethanesulfonate置于sodium Hydrogensulfide体系中,用 乙醚 作为反应溶剂,以59%的收率获得产物三苯基瞵硫
    参考文献:基于甲硫基和甲基硒化salts盐化学方法的膦硫基-膦基硒代化合物的新型立体选择性互变,膦基硒代衍生物的还原和pishchimuka的复古重排
    标题:基于甲硫基和甲基硒化salts盐化学方法的膦硫基-膦基硒代化合物的新型立体选择性互变,膦基硒代衍生物的还原和pishchimuka的复古重排
    摘要:已发现硫代诺素向硒代化合物的相互转化可以保持磷的构型,并且已经提出了该过程的机理.已经开发了硫膦酸酯通过the盐的异构化为硫代异构体的反应,并被认为是"复古的pishchimuka"重排.
    DOI:10.1016/s0040-4020(01)81908-6

    海关参考信息

    专利信息


    专利号:US-4895922-A
    优先权日:1988-05-05
    标 题 :Low temperature synthesis of polyesteramides
    发明人:OGATA NAOYA
    权利人:GOODYEAR TIRE & RUBBER
    摘要:This invention disclosed a process for the synthesis of polyesteramides. By utilizing the phosphorus containing catalyst systems of the present invention, such polyesteramides can be synthesized at relatively low temperatures. The present invention specifically discloses a process for the synthesis of a polyesteramide which comprises polymerizing at least one diamine, at least one diol, and at least one dicarboxylic acid in the presence of (1) at least one acid acceptor; (2) at least one halogenated organic compound; and (3) at least one phosphorus containing compound selected from the group consisting of (a) triphenylphosphine, (b) triphenylphosphine oxide, (c) triphenylphosphine sulfide, (d) polymeric agents having pendant diphenylphosphine groups, (e) silicon-phosphorus compositions which contain at least one divalent oxygen atom which is bonded directly to a tetravalent silicon atom and a trivalent or pentavalent phosphorus atom; (f) compounds with the structural formula (C 6 H 5 ) 3 P=N-R, wherein R is a hydrogen atom or an alkyl group containing from 1 to 10 carbon atoms; and (g) compounds with the structural formula (C 6 H 5 )PR 1 R 2 wherein R 1 and R 2 can be the same or different, wherein R 1 is selected from the group consisting of alkyl groups containing from 1 to 10 carbon atoms and phenyl groups, and wherein R 2 is an alkyl group containing from 1 to 10 carbon atoms.

    专利号:US-4923839-A
    优先权日:1987-02-05
    标题:Low temperature synthesis of condensation polymers
    发明人:OGATA NAOYA
    权利人:GOODYEAR TIRE & RUBBER
    摘要:Condensation polymers of high molecular weight, such as polyesters, polyureas, and polyamides, are usually prepared at temperatures of 200° C. or greater. However, by utilizing the catalyst systems of the present invention, condensation polymers can be synthesized at much lower temperatures. The polycondensation catalyst systems of the present invention are particularly useful for synthesizing aliphatic polyesters, such as polyethylene terephthalate, from dicarboxylic acids and aliphatic glycols. The present invention more specifically discloses a process for the synthesis of an aliphatic polyester comprising polymerizing at least one dicarboxylic acid with at least one aliphatic glycol in the presence of (1) at least one phosphorus containing compound which contains at least one trivalent or pentavalent phosphorus atom which is bonded directly to at least one phenyl group, (2) an acid acceptor, and (3) at least one halogenated organic compound. It is preferred to utilize a polymeric agent having bound acid acceptor groups as the acid acceptor in the process of the present invention.

    专利号:US-4843053-A
    优先权日:1987-02-05
    标 题 :Low temperature synthesis of condensation polymers
    发明人:OGATA NAOYA
    权利人:GOODYEAR TIRE & RUBBER
    摘要:Condensation polymers of high molecular weight, such as polyesters, polyureas, and polyamides, are usually prepared at temperatures of 200° C. or greater. However, by utilizing the catalyst systems of the present invention, condensation polymers can be synthesized at much lower temperatures. The polycondensation catalyst systems of the present invention are particularly useful for synthesizing aliphatic polyesters, such as polyethylene terephthalate, from dicarboxylic acids and aliphatic glycols. The present invention more specifically discloses a process for the synthesis of an aliphatic polyester comprising polymerizing at least one dicarboxylic acid with at least one aliphatic glycol in the presence of (1) at least one phosphorus containing compound which contains at least one trivalent or pentavalent phosphorus atom which is bonded directly to at least one phenyl group, (2) an acid acceptor, and (3) at least one halogenated organic compound. It is preferred to utilize a polymeric agent having bound acid acceptor groups as the acid acceptor in the process of the present invention.

    专利号:US-4996178-A
    优先权日:1987-02-05
    标题 :Low temperature synthesis of condensation polymers
    发明人:OGATA NAOYA
    权利人:GOODYEAR TIRE & RUBBER
    摘要:Condensation polymers of high molecular weight, such as polyesters, polyureas, and polyamides, are usually prepared at temperatures of 200° C. or greater. However, by utilizing the catalyst systems of the present invention, condensation polymers can be synthesized at much lower temperatures. The polycondensation catalyst systems of the present invention are particularly useful for synthesizing aliphatic polyesters, such as polyethylene terephthalate, from dicarboxylic acids and aliphatic glycols. The present invention more specifically discloses a process for the synthesis of an aliphatic polyester comprising polymerizing at least one dicarboxylic acid with at least one aliphatic glycol in the presence of (1) at least one phosphorus containing compound which contains at least one trivalent or pentavalent phosphorus atom which is bonded directly to at least one phenyl group, (2) an acid acceptor, and (3) at least one halogenated organic compound. It is preferred to utilize a polymeric agent having bound acid acceptor groups as the acid acceptor in the process of the present invention.

    专利号:US-7723528-B2
    优先权日:2008-06-05
    标题:Sulfur transfer reagents for oligonucleotide synthesis
    发明人:GUZAEV ANDREI P
    权利人:AM CHEMICALS LLC
    摘要:The use of N-formamidino-5-amino-3H-1,2,4-dithiazole-3-thiones as novel, efficient sulfur-transfer reagents is disclosed. The sulfur transfer from these reagents to compounds containing P(III) atom, triphenylphosphine, 5′-O-DMT-thymidine 2-cyanoethyl-(N,N-diisopropyl)phosphoramidite, and 5′-O-DMT-3′-O-levulinyl dithymidilyl 2-cyanoethyl phosphite, was studied in solution by 31 P NMR and HPLC. The sulfur transfer from title compounds was also studied in the solid-phase synthesis of oligonucleotide phosphorothioates by phosphoramidite methods. In this application, the efficiency of the sulfur transfer reaction for 2′-deoxyoligonucleotides was better than 99.5%. The novel sulfurizing agents are synthesized, at low cost, using simple chemical methods. As opposed to many sulfur transfer reagents known in the prior art such as 1,2-benzodithiol-3-one-1,1-dioxide (Beaucage reagent) and 5-ethoxy-3H-1,2,4-dithiazole-2-one (EDIT), the sulfurizing agents disclosed herein are highly stable in solution, which increases their practical and commercial value.

    专利号:US-8552175-B2
    优先权日:2009-04-23
    标题:Sulfur transfer reagents for oligonucleotide synthesis
    发明人:GUZAEV ANDREI P
    权利人:GUZAEV ANDREI P; A M CHEMICALS INC
    摘要:The use of N-formamidino-5-amino-3H-1,2,4-dithiazole-3-thiones, 5-phenyl-3H-1,2,4-dithiazole-3-thiones, and derivatives thereof as novel, efficient sulfur-transfer reagents is disclosed. Sulfur transfer from these reagents to compounds containing a P(III) atom (e.g., triphenylphosphine, 5′-O-DMT-thymidine 2-cyanoethyl-(N,N-diisopropyl)phosphoramidite, and 5′-O-DMT-3′-O-levulinyl dithymidilyl 2-cyanoethyl phosphite), was studied in solution by 31 P NMR and HPLC. The sulfur transfer from title compounds was also studied in the solid-phase synthesis of oligonucleotide phosphorothioates by phosphoramidite methods. In this application, the efficiency of the sulfur transfer reaction for 2′-deoxyoligonucleotides was better than 99.5%. The novel sulfurizing agents are synthesized, at low cost, using simple chemical methods. As opposed to many sulfur transfer reagents known in the prior art such as 1,2-benzodithiol-3-one-1,1-dioxide (Beaucage reagent) and 5-ethoxy-3H-1,2,4-dithiazole-2-one (EDIT), the sulfurizing agents disclosed herein are highly stable in solution, which increases their practical and commercial value.
    河南氢硅新材料科技有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.qgxcl.com
    企业联系电话:18569915792(微信号15038032370);18039286726(微信同号)👤
    📞河南氢硅新材料科技有限公司 ⚠️参考联系方式

    电话:18569915792(微信号15038032370);18039286726(微信同号)


    邮箱:qingguixincailiao@163.com
    通信地址: 河南省焦作市沁阳市沁园街道未来路1号
    邮编: 454550
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    地址:河南省焦作市沁阳市沁园街道未来路1号
    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别
    ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    第 1 / 1 页

    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

    主要参考文献

    1. Srinivasa Reddy T, Privér SH, Mirzadeh N, Luwor RB, Ganga Reddy V, Ramesan S, Bhargava SK. Antitumor and Antiangiogenic Properties of Gold(III) Complexes Containing Cycloaurated Triphenylphosphine Sulfide Ligands. Inorg Chem. 2020 Apr 20;59(8):5662-5673. doi: 10.1021/acs.inorgchem.0c00423. Epub 2020 Apr 7.

    合成参考文献


    摘要:Negishi, E.; Wang, G., Science of Synthesis, (2009) 46, 275.
    摘要:Podlech, J., Science of Synthesis Knowledge Updates, (2019) 1, 405.
    摘要:Demchuk, O. M.; Stankevič, M.; Pietrusiewicz, K. M., Science of Synthesis Knowledge Updates, (2015) 1, 383.
    摘要:Dagousset, G.; Masson, G., Science of Synthesis Knowledge Updates, (2015) 1, 413.
    摘要:Demchuk, O. M.; Stankevič, M.; Pietrusiewicz, K. M., Science of Synthesis Knowledge Updates, (2015) 1, 300.
    📝 需求与反馈
    尽可能描述清楚需求与问题信息
    ×

    通知