共 125 条
Dehydropolymerization of H3B.NIMeH2 To Form Polyaminoboranes Using [Rh(Xantphos-alkyl)] Catalysts
被引:75
作者:
Adams, Gemma M.
[1
]
Colebatch, Annie L.
[1
]
Skornia, Joseph T.
[1
]
McKay, Alasdair I.
[1
]
Johnson, Heather C.
[1
]
Lloyd-Jones, Guy C.
[2
]
Macgregor, Stuart A.
[3
]
Beattie, Nicholas A.
[3
]
Weller, Andrew S.
[1
]
机构:
[1] Chem Res Labs, Mansfield Rd, Oxford OX1 3TA, England
[2] Univ Edinburgh, Sch Chem, Edinburgh EH9 3FJ, Midlothian, Scotland
[3] Heriot Watt Univ, Inst Chem Sci, Edinburgh EH14 4AS, Midlothian, Scotland
基金:
英国工程与自然科学研究理事会;
欧洲研究理事会;
关键词:
AMMONIA-BORANE DEHYDROGENATION;
FREE HYDROGEN-TRANSFER;
AMINE-BORANES;
TRANSITION-METAL;
DIMETHYLAMINE-BORANE;
SIGMA-COMPLEXES;
H-2;
RELEASE;
HOMOGENEOUS CATALYSIS;
METHYLAMINE-BORANE;
CRUCIAL ROLE;
D O I:
10.1021/jacs.7b11975
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
A systematic study of the catalyst structure and overall charge for the dehydropolymerization of H3B.NMeH2 to form N-methyl polyaminoborane is reported using catalysts based upon neutral and cationic {Rh(Xantphos-R)} fragments in which PR2 groups are selected from Et, iPr, and tBu. The most efficient systems are based upon {Rh(Xantphos-Pr-i)}, i.e., [Rh(kappa(3)-P,O,P-Xantphos-Pr-i)(H)(2)(eta(1)-H3B.NMe3)][BArF4], 6, and Rh(kappa(3)-P,O,P-Xantphos-Pr-i)H, 11. While H-2 evolution kinetics show both are fast catalysts (ToF 1500 h(-1)) and polymer growth kinetics for dehydropolymerization suggest a classical chain growth process for both, neutral 11 (M-n = 28 000 g mol(-1), D = 1.9) promotes significantly higher degrees of polymerization than cationic 6 (Mn = 9000 g mol(-1), D = 2.9). For 6 isotopic labeling studies suggest a rate-determining NH activation, while speciation studies, coupled with DFT calculations, show the formation of a dimetalloborylene [{Rh(kappa(3)-P,O,P-Xantphos-Pr-i)}(2)B](+) as the, likely dormant, end product of catalysis. A dual mechanism is proposed for dehydropolymerization in which neutral hydrides (formed by hydride transfer in cationic 6 to form a boronium coproduct) are the active catalysts for dehydrogenation to form aminoborane. Contemporaneous chain-growth polymer propagation is suggested to occur on a separate metal center via head-to-tail end chain B-N bond formation of the aminoborane monomer, templated by an aminoborohydride motif on the metal.
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页码:1481 / 1495
页数:15
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