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  Ligands Based on Phosphine‐Stabilized Aluminum(I), Boron(I), and Carbon(0)

Vondung, L., Jerabek, P., & Langer, R. (2019). Ligands Based on Phosphine‐Stabilized Aluminum(I), Boron(I), and Carbon(0). Chemistry – A European Journal, 25(12), 3068-3076. doi:10.1002/chem.201805123.

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アイテムのパーマリンク: https://hdl.handle.net/21.11116/0000-0003-D056-1 版のパーマリンク: https://hdl.handle.net/21.11116/0000-0003-D057-0
資料種別: 学術論文

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 作成者:
Vondung, Lisa1, 2, 著者
Jerabek, Paul2, 3, 著者           
Langer, Robert1, 著者
所属:
1Department of Chemistry, Philipps-Universität Marburg, Hans-Meerwein-Str. 4, 35032 Marburg, Germany, ou_persistent22              
2Centre for Theoretical Chemistry and Physics, The New Zealand Institute for Advanced Study and the Institute for Natural and Mathematical Sciences, Massey University, Albany, New Zealand, ou_persistent22              
3Research Department Neese, Max-Planck-Institut für Kohlenforschung, Max Planck Society, ou_2541710              

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キーワード: bond theory; computational chemistry; ligand effects; main group elements; transition metals
 要旨: A systematic quantum chemical study of the bonding in d6‐transition‐metal complexes, containing phosphine‐stabilized, main‐group‐element fragments, (R3P)2E, as ligands (E=AlH, BH, CH+, C), is reported. By using energy decomposition analysis, it is demonstrated that a strong M−E bond is accompanied by weak P−E bonds, and vice versa. Although the Al−M bond is, for example, found to be very strong, the weak Al−P bond suggests that the corresponding metal complexes will not be stable towards phosphine dissociation. The interaction energies for the boron(I)‐based ligand are lower, but still higher than those for two‐carbon‐based ligands. For neutral ligands, electrostatic interactions are the dominating contributions to metal–ligand bonding, whereas for the cationic ligand a significant destabilization, with weak orbital and even weaker electrostatic metal–ligand interactions, is observed. Finally, for iron(II) complexes, it is demonstrated that different reactivity patterns are expected for the four donor groups: the experimentally observed reversible E−H reductive elimination of the borylene‐based ligand (E=BH) exhibits significantly higher barriers for the protonated carbodiphosphorane (CDP) ligand (E=CH) and would proceed through different intermediates and transition states. For aluminum, such reaction pathways are not feasible (E=AlH). Moreover, it is demonstrated that the metal hydrido complexes with CDP ligands might not be stable towards reduction and isomerization to a protonated CDP ligand and a reduced metal center.

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言語: eng - English
 日付: 2018-10-112018-12-192019-02-26
 出版の状態: オンラインで出版済み
 ページ: 9
 出版情報: -
 目次: -
 査読: 査読あり
 識別子(DOI, ISBNなど): DOI: 10.1002/chem.201805123
 学位: -

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出版物 1

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出版物名: Chemistry – A European Journal
  その他 : Chem. – Eur. J.
  その他 : Chem. Eur. J.
種別: 学術雑誌
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所属:
出版社, 出版地: Weinheim : Wiley-VCH
ページ: - 巻号: 25 (12) 通巻号: - 開始・終了ページ: 3068 - 3076 識別子(ISBN, ISSN, DOIなど): ISSN: 0947-6539
CoNE: https://pure.mpg.de/cone/journals/resource/954926979058