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法國圖盧茲大學(xué)招收2025年CSC合作渠道化學(xué)(金屬有機(jī))博士生-LHFA實(shí)驗(yàn)室
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圖盧茲第三大學(xué)(Université Toulouse III – Paul Sabatier)CNRS-LHFA實(shí)驗(yàn)LBPB課題組Dr. Didier Bourissou和Prof. Blanca Martin Vaca現(xiàn)招收金屬-配體協(xié)同(MLC)均相催化方向博士生一名,預(yù)計(jì)2025年9月或10月入學(xué)。關(guān)于LBPB的更多信息可通過課題組網(wǎng)站了解:https://lhfa.cnrs.fr/index.php/en/teams/lbpb-en/accueil-lbpb-en.(備注:這里的老師都非常友善和耐心,有問題老師都會(huì)積極幫你解決,課題組氛圍活越,歡迎感興趣的同學(xué)加入我們) 研究內(nèi)容: 項(xiàng)目聚焦新型非惰性配體及其與過渡金屬(如Ru、Fe、Mn等)的配合,研究其在小分子活化及催化反應(yīng)中的應(yīng)用。 研究內(nèi)容: 配體設(shè)計(jì)、金屬配合物表征、反應(yīng)活性及催化應(yīng)用。 申請要求:候選人需具備分子化學(xué)及合成經(jīng)驗(yàn),對有機(jī)金屬化學(xué)感興趣聚。熟悉相關(guān)技術(shù)(如NMR、無水無氧操作等),并具備一定的英語能力(可提供語言證明)和團(tuán)隊(duì)精神。 有興趣的申請者可以直接聯(lián)系:blanca-maria.martin-vaca@univ-tlse3.fr / didier.bourissou@univ-tlse3.fr 更多信息參見下面的英文部份: Context. Over the last decade, metal/ligand cooperation (MLC) has attracted huge attention in homogeneous catalysis. Thanks to the synergy between the transition metal and one of its ligands for the activation of the substrates, extraordinary improvements in efficiency and selectivity can be achieved.1 Pincer complexes of transition metals play a prominent role in this domain, and our group has contributed to the field with a family of original SCS pincer ligands based on an indene skeleton bearing two coordinating P=S side-arms. Remarkable results have been obtained in Pd and Pt catalyzed cyclisation processes involving the formation of C-O/C-N & C-C bonds and thorough mechanistic investigations have supported metal-ligand cooperation. We are currently working on a new family of PNS pincer ligands deriving from the quinoline moiety. We have evidenced two different sites of non-innocent behavior (through dearomatization and across the M-S bond). Proofs of concept for their application in MLC catalysis with Pd complexes have also been obtained in heterofunctionalization processes involving Eδ+-Hδ- bond activation (E = Si, Ge) thanks to Pd-S cooperation.3 Objectives. This PhD aims at expanding and exploiting the structural diversity of such complexes, with variations of both the non-innocent ligand and the transition metal (Ru as well as abundant 3rd row transition metals such as Fe and Mn). The corresponding complexes will be thoroughly characterized and their non-innocent behavior towards Xδ--Hδ+ (X = C, O, N …) and Eδ+-Hδ- (E = Si, Ge, B …) bond activation will be investigated. Ultimately, this new type of MLC will be leveraged in catalytic transformations. In summary, this proposal is at the cross point of organometallic chemistry and catalysis. It involves the design of non-innocent ligands, their coordination to TM, reactivity studies towards small molecule activation and applications in MLC-catalysis. 參考文獻(xiàn): [1] Milstein, D. Angew. Chem. Int. Ed. 2015, 54, 12236. [2] (a) Martin-Vaca, B.; Bourissou, D. et al. ACS Catal., 2014, 4, 3605. (b) Martin-Vaca, B.; Bourissou, D. et al. Chem. Sci. 2016, 3, 2179. (c) Martin-Vaca, B.; Bourissou, D. et al. Chem. Sci. 2021, 12, 435. [3] Martin-Vaca, B.; Bourissou, D. et al. ChemistryEurope, DOI: 10.1002/ceur.202400079 |
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