CAS: 1754-49-0; Diethyl Phenylphosphonate

该化合物是一种有机磷化合物,其特征是磷功能组,其特征是磷原子与氧原子结合,两个乙基组,以及一个苯组,该化合物一般看起来无色,是淡黄色液体,以其中度挥发性和有机溶剂溶解性而著称,在各个领域都有应用,包括作为有机合成的试剂和作为其他含磷化合物生产的潜在中间体.二乙基苯磷表明化学反应中磷的潜在来源等特性,并可能作为化学协调中的离心剂.安全考虑很重要,因为如果吸入或摄入,可能会对健康造成危害,因此应当采取适当的处理措施,以尽量减少接触.其再活性可能受到其他分子中功能组的存在的影响,使其在合成化学中成为多用途化合物.

结构式图片

上下游产品

bromobenzene triethyl phosphate 2-bromo-2-nitropropane diethyl phenylphosphoniteethylphenylphosphinic acid ethyl ester -amidophosphonsaeure-diaethylester-amidophosphonsaeure-diaethylester phenyltriethoxyphosphonium tetrafluoroborate ethyl (4-methylphenyl)phenylphosphinate

合成工艺路线路线简述

  • 合成目标产物 Diethyl Phenylphosphonate 主要起始原料 P-Toluenesulfonic Acid Phenyl Ester And Diethyl Phosphite
  • (文献来源)合成步骤主要原料 P-Toluenesulfonic Acid Phenyl Ester 和 Diethyl Phosphite
📜3-(Diethoxyphosphoryl)-N,N,N-Trimethylbenzenaminium Iodide置于2,4,5,6-四(9H-咔唑-9-基)异酞腈,Sodium Formate,Mesna体系中,用 二甲基亚砜 用作溶剂,化学反应 16.0H,以94%的收率获得苯基膦酸二乙酯
参考文献:通过二氧化碳自由基阴离子 (Co2•-) 进行自由基链还原
标题:通过二氧化碳自由基阴离子 (Co2•-) 进行自由基链还原
摘要:我们开发了一种有效的还原自由基形成方法,该方法利用二氧化碳的自由基阴离子 (Co 2 •-) 作为强大的单电子还原剂.通过亲电自由基和甲酸盐之间的极性匹配氢原子转移 (Hat),Co 2 •-形成作为新的自由基链式反应的关键元素.在这里,自由基链引发可以通过光化学或热方式进行,我们说明了这种方法实现一系列底物类别的还原活化的能力.具体来说,我们将这种策略用于未活化烯烃与(杂)芳基氯化物/溴化物的分子间加氢芳基化,芳基铵盐的自由基脱氨基,脂肪族酮基自由基的形成和磺酰胺裂解.我们表明,Co 2 •-与贫电子烯烃的反应性导致单电子还原或烯烃加氢羧化,其中底物还原电位可用于预测反应结果.
Doi:10.1021/jacs.1C04427

海关参考信息

专利信息


专利号:US-10927135-B2
优先权日:2017-08-03
标 题:Metal-free direct arylation of dialkyl phosphonates for the synthesis of mixed alkyl aryl phosphonates
发明人:KANG JUN YONG; HUANG HAI
权利人:THE BOARD OF REGENTS OF THE NEVADA SYSTEM OF HIGHER EDUCATION ON BEHALF OF THE UNIV OF NEVADA LAS VE
摘要:Provided herein are phosphates, thiophosphates, phosphonates, and phosphinates, methods of making same, and methods of using these compounds and methods for the generation of pharmaceutically relevant phosphate, phosphonate, and phosphinate analogs. This abstract is intended as a scanning tool for purposes of searching in the particular art and is not intended to be limiting of the present invention.

专利号:US-11862794-B2
优先权日:2020-05-06
标题:Cost effective synthesis of oxide materials for lithium ion batteries

专利号:US-2024351913-A1
优先权日:2020-05-06
标 题 :Cost effective synthesis of oxide materials for lithium ion batteries

专利号:US-12211999-B2
优先权日:2020-05-06
标题:Cost effective synthesis of oxide materials for lithium ion batteries
发明人:XIAO JIE; BI YUJING
权利人:BATTELLE MEMORIAL INSTITUTE
摘要:Methods for synthesizing single crystalline Ni-rich cathode materials are disclosed. The Ni-rich cathode material may have a formula LiNi X Mn y M z Col 1-x-y-z O 2 , where M represents one or more dopant metals, x≥0.6, 0.01≤y<0.2, 0≤z≤0.05, and x+y+z≤1.0. The methods are cost-effective, and include methods for solid-state, molten-salt, and flash-sintering syntheses.

专利号:US-2024088382-A1
优先权日:2020-05-06
标题 :Cost effective synthesis of oxide materials for lithium ion batteries

专利号:WO-2019028391-A1
优先权日:2017-08-03
标 题 :DIALKYL PHOSPHONATE DIRECT METAL-FREE ARYLATION FOR THE SYNTHESIS OF MIXED ALKYL ARYLATED PHOSPHONATES

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


摘要:Celik, I.; Hummel, S.; Kirsch, S. F., Science of Synthesis Knowledge Updates, (2019) 1, 61.
摘要:Kimura, T., Science of Synthesis Knowledge Updates, (2016) 2, 443.
摘要:Virieux, D.; Ayad, T.; Pirat, J.-L.; Volle, J.-N., Science of Synthesis Knowledge Updates, (2018) 1, 282.
摘要:Petit, C.; Montchamp, J.-L., Science of Synthesis: Cross Coupling and Heck-Type Reactions, (2012) 2, 355.
摘要:Satoh, T.; Miura, M., Science of Synthesis: Catalytic Transformations via CH Activation, (2015) 1, 208.
📝 需求与反馈
尽可能描述清楚需求与问题信息
×

通知