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铝/磷受阻路易斯对(FLP)与α,β-不饱和羰基化合物的反应:FLP 作为高效的两电子还原剂,形成烯醇盐、顺式烯二酮和丙二烯。

Reactions of an Aluminium/Phosphorus Frustrated Lewis Pair (FLP) with α,β-Unsaturated Carbonyl Compounds: FLPs as Efficient Two-Electron Reductants with the Formation of Enolates, a cis-Enediolate, and an Allene.

机构信息

Institut für Anorganische und Analytische Chemie, Westfälische Wilhelms-Universität Münster, Corrensstrasse 30, 48149, Münster, Germany.

Organisch-chemisches Institut and Center for, Multiscale Theory and Computation (CMTC), Westfälische Wilhelms-Universität Münster, Corrensstrasse 40, 48149, Münster, Germany.

出版信息

Chemistry. 2018 Sep 3;24(49):12856-12868. doi: 10.1002/chem.201706089. Epub 2018 Mar 5.

Abstract

The Al/P-based frustrated Lewis pair (FLP) Mes P-C(AltBu) =C(H)Ph (1; Mes=mesityl) reacted as an efficient two-electron reductant with benzil to afford a cis-enediolate that was coordinated to the FLP through P-O and Al-O bonds and the formation of a seven-membered heterocycle (2). The phosphorus atom is oxidised from +III to +V. Similar heterocycles (3 a to 3 f) were formed if 1 was treated with various enones (acrolein, acrylate, acrylamide). The resulting enolates are bound to the FLP through P-C and Al-O bonds. Cyclopropenone gave an adduct (4) with the C=O bond coordinated by P and Al. Ynones gave a fascinating variety of different structures. 1,3-Diphenylprop-2-yn-1-one afforded a remarkable allene-type moiety with two cumulated C=C bonds (5); 3-hexyn-2-one yielded a ligand with two conjugated C=C bonds by C-H bond activation at the carbonyl methyl group (7); and 4-(trimethylsilyl)-3-butyn-2-one reacted by C-H bond cleavage, formation of an enolate group with a terminal C=C bond, and shift of the proton to the P atom (8). The C≡C bond was not affected. Allene compound 5 rearranged at elevated temperature and in daylight through the formation of a tricyclic compound by C-H bond activation and C-C bond formation. DFT calculations on this unusual rearrangement suggest insertion of the central allene C atom into the C-H bond of a methyl group and the intermediate formation of a C ring.

摘要

基于铝/磷的受阻路易斯对(FLP)Mes P-C(AltBu) =C(H)Ph(1;Mes=mesityl)与苯偶姻反应,作为一种有效的两电子还原剂,生成通过 P-O 和 Al-O 键以及形成七元杂环(2)与 FLP 配位的顺式烯二醇。磷原子从+III 氧化到+V。如果 1 用各种烯酮(丙烯醛、丙烯酸酯、丙烯酰胺)处理,则会形成类似的杂环(3a 到 3f)。生成的烯醇盐通过 P-C 和 Al-O 键与 FLP 结合。环丙烯酮与 C=O 键配位,通过 P 和 Al 形成加合物(4)。炔酮给出了各种不同结构的迷人混合物。1,3-二苯基丙-2-炔-1-酮提供了一个显著的丙二烯型部分,具有两个累积的 C=C 键(5);3-己炔-2-酮通过羰基甲基的 C-H 键活化生成具有两个共轭 C=C 键的配体(7);4-(三甲基甲硅烷基)-3-丁炔-2-酮通过 C-H 键断裂反应,形成具有末端 C=C 键的烯醇盐基团,并将质子转移到 P 原子(8)。C≡C 键未受影响。丙二烯化合物 5 在高温和日光下通过 C-H 键活化和 C-C 键形成重排为三环化合物。对这种不寻常重排的 DFT 计算表明,中央丙二烯 C 原子插入甲基的 C-H 键中,并形成 C 环的中间产物。

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