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.
引用
收藏
页码:1481 / 1495
页数:15
相关论文
共 125 条
  • [1] POP-type ligands: Variable coordination and hemilabile behaviour
    Adams, Gemma M.
    Weller, Andrew S.
    [J]. COORDINATION CHEMISTRY REVIEWS, 2018, 355 : 150 - 172
  • [2] Aminoborane σ Complexes: Significance of Hydride Co-ligands in Dynamic Processes and Dehydrogenative Borylene Formation
    Addy, David A.
    Bates, Joshua I.
    Kelly, Michael J.
    Riddlestone, Ian M.
    Aldridge, Simon
    [J]. ORGANOMETALLICS, 2013, 32 (06) : 1583 - 1586
  • [3] A terminal borylene ruthenium complex: From B-H activation to reversible hydrogen release
    Alcaraz, Gilles
    Helmstedt, Ulrike
    Clot, Eric
    Vendier, Laure
    Sabo-Etienne, Sylviane
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2008, 130 (39) : 12878 - +
  • [4] Coordination and Dehydrogenation of Amine-Boranes at Metal Centers
    Alcaraz, Gilles
    Sabo-Etienne, Sylviane
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2010, 49 (40) : 7170 - 7179
  • [5] Ruthenium Bis(σ-B-H) Aminoborane Complexes from Dehydrogenation of Amine-Boranes: Trapping of H2B-NH2
    Alcaraz, Gilles
    Vendier, Laure
    Clot, Eric
    Sabo-Etienne, Sylviane
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2010, 49 (05) : 918 - 920
  • [6] Structures and Aggregation of the Methylamine-Borane Molecules, MenH3-nN•BH3 (n=1-3), Studied by X-ray Diffraction, Gas-Phase Electron Diffraction, and Quantum Chemical Calculations
    Aldridge, Simon
    Downs, Anthony J.
    Tang, Christina Y.
    Parsons, Simon
    Clarke, Michael C.
    Johnstone, Russell D. L.
    Robertson, Heather E.
    Rankin, David W. H.
    Wann, Derek A.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2009, 131 (06) : 2231 - 2243
  • [7] A combined experimental and computational study of fluxional processes in sigma amine-borane complexes of rhodium and iridium
    Algarra, Andres G.
    Sewell, Laura J.
    Johnson, Heather C.
    Macgregor, Stuart A.
    Weller, Andrew S.
    [J]. DALTON TRANSACTIONS, 2014, 43 (29) : 11118 - 11128
  • [8] POP-Pincer Osmium-Polyhydrides: Head-to-Head (Z)-Dimerization of Terminal Alkynes
    Alos, Joaquin
    Bolano, Tamara
    Esteruelas, Miguel A.
    Olivan, Montserrat
    Onate, Enrique
    Valencia, Marta
    [J]. INORGANIC CHEMISTRY, 2013, 52 (10) : 6199 - 6213
  • [9] Formation of high-molecular weight polyaminoborane by Fe hydride catalysed dehydrocoupling of methylamine borane
    Anke, F.
    Han, D.
    Klahn, M.
    Spannenberg, A.
    Beweries, T.
    [J]. DALTON TRANSACTIONS, 2017, 46 (21) : 6843 - 6847
  • [10] Iron Complex-Catalyzed Ammonia-Borane Dehydrogenation. A Potential Route toward B-N-Containing Polymer Motifs Using Earth-Abundant Metal Catalysts
    Baker, R. Tom
    Gordon, John C.
    Hamilton, Charles W.
    Henson, Neil J.
    Lin, Po-Heng
    Maguire, Steven
    Murugesu, Muralee
    Scott, Brian L.
    Smythe, Nathan C.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2012, 134 (12) : 5598 - 5609