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将磷酰胺固定在 TiO 表面用于非均相相 Appel 反应的催化。

Immobilization of Phosphamide on the TiO Surface for Heterogeneous Phase Catalytic Appel Reaction.

机构信息

Department of Chemistry, Indian Institute of Technology, Hauz Khas, New Delhi 110016, India.

出版信息

Inorg Chem. 2023 May 22;62(20):7728-7737. doi: 10.1021/acs.inorgchem.3c00304. Epub 2023 May 6.

Abstract

Global consumption of triphenylphosphine (PhP) for phosphorus-mediated organic synthesis and production of the dead-end triphenylphosphine oxide (PhPO) waste is exceptionally high. Recycling PhPO and/or use of it as a reaction mediator gained significant attention. On the other end, phosphamides, traditionally used as a flame redundant, are stable analogues to PhPO. Herein, via a low temperature condensation reaction of methyl 4-(aminomethyl)benzoate (AMB) and diphenyl phosphinic chloride (DPPC), methyl 4-((,-diphenylphosphinamido)methyl)benzoate () has been synthesized and hydrolysis of the ester functional group of leads to a phosphamide with a carboxylate terminal, 4-((,-diphenylphosphinamido)methyl)benzoic acid (). The presence of phosphamide functionality (NH─P═O) in can be confirmed by its characteristic Raman vibration at 999 cm with expected P-N and P═O bonds distances from the single-crystal X-ray structure. In-situ hydrolysis of [Ti(OiPr)] in the presence of followed by hydrothermal heating results in immobilization of on a ca. 5 nm TiO surface (@TiO). The covalent attachment of via coordination through the carboxylate terminal to the TiO nanocrystal's surface has been established via multiple spectroscopic and microscopic studies. @TiO is further used as the heterogeneous mediator for the catalytic Appel reaction, halogenation of alcohol (typically mediated by phosphine), with a fair catalytic conversion and a recorded TON up to 31. The major advantage of the heterogeneous approach studied herein is the recovery of used @TiO from the reaction mixture via centrifugation only leaving the organic product in the supernatant, which is limiting in PhP-mediated homogeneous catalysis. Time-resolved Raman spectroscopy confirms amino phosphine as the active species formed in-situ during the catalytic Appel reaction. Post-catalytic characterization of the material recovered after catalysis from the reaction mixture confirms the chemical integrity and that can further be utilized for another two catalytic runs. The developed reaction scheme showcases the use of a phosphamide as a reactive analogue to PhPO for an organic reaction in a heterogeneous approach, and the same strategy can be explored further as a general scheme for other phosphorus-mediated reactions.

摘要

全球范围内,三苯基膦(PhP)在磷介导的有机合成和生产末端三苯基氧化膦(PhPO)废物方面的消耗量极高。因此,PhPO 的回收和/或将其用作反应介质引起了广泛关注。另一方面,磷酰胺传统上用作阻燃剂,是 PhPO 的稳定类似物。在此,通过对甲酯 4-(氨甲基)苯甲酸(AMB)和二苯基膦酰氯(DPPC)的低温缩合反应,合成了甲酯 4-((二苯基膦酰胺基)甲基)苯甲酸(),然后酯基水解生成末端羧酸盐的磷酰胺,4-((二苯基膦酰胺基)甲基)苯甲酸()。通过其在 999 cm 处的特征拉曼振动,可以确认 中磷酰胺官能团(NH─P═O)的存在,预期的 P-N 和 P═O 键距离来自单晶 X 射线结构。在 存在下原位水解 [Ti(OiPr)],然后进行水热加热,导致 固定在约 5 nm 的 TiO 表面(@TiO)上。通过羧酸盐末端与 TiO 纳米晶表面的配位,通过多种光谱和显微镜研究证实了 通过配位键将 固定在 TiO 纳米晶表面上。@TiO 进一步用作 Appel 反应的非均相介体,醇的卤化(通常由膦介导),具有良好的催化转化率和记录的 TON 高达 31。与 PhP 介导的均相催化相比,所研究的非均相方法的主要优点是仅通过离心从反应混合物中回收用过的@TiO,将有机产物留在上清液中,这在 PhP 介导的均相催化中是有限的。时间分辨拉曼光谱证实,在催化 Appel 反应过程中原位形成的活性物种为氨基膦。从反应混合物中回收的催化后材料的后催化表征证实了其化学完整性,并且可以进一步用于另外两个催化循环。所开发的反应方案展示了在非均相方法中使用磷酰胺作为 PhPO 的反应类似物进行有机反应,并且可以进一步探索该策略作为其他磷介导反应的一般方案。

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