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Preparation and structure of ammonia and alkylamine addition compounds of phosphine diborane, B2H6.PH3.NR3

This article is cited by 22 publications.Louis J. Morris, Michael S. Hill, Mary F. Mahon, Ian Manners, Brian O. Patrick. Alkaline-Earth Derivatives of Diphenylphosphine–Borane. Organometallics 2020, 39 (23) , 4195-4207. https://doi.org/10.1021/acs.organomet.0c00008Taylor V. Fetrow, Rina Bhowmick, Andreas J. Achazi, Anastasia V. Blake, Francesca D. Eckstrom, Bess Vlaisavljevich, Scott R. Daly. Chelating Borohydrides for Lanthanides and Actinides: Structures, Mechanochemistry, and Case Studies with Phosphinodiboranates. Inorganic Chemistry 2020, 59 (1) , 48-61. https://doi.org/10.1021/acs.inorgchem.9b01628Mitchell R. Anstey, Michael T. Corbett, Eric H. Majzoub, and Joseph G. Cordaro . Improved Synthesis of Bis(borano)hypophosphite Salts. Inorganic Chemistry 2010, 49 (18) , 8197-8199. https://doi.org/10.1021/ic101326cEdward A. Dietz, Karen W. Morse, and Robert W. Parry. Mechanistic model for the reactions of ammonia and the methylamines with phosphine-borane. Inorganic Chemistry 1976, 15 (1) , 1-7. https://doi.org/10.1021/ic50155a001Guy E. Graves and Larry W. Houk. Phosphorus-substituted hydrazines. III. Group 6B metal carbonyl derivatives of selected phosphinohydrazines. Inorganic Chemistry 1976, 15 (1) , 7-12. https://doi.org/10.1021/ic50155a002Keith Izod, James M. Watson, Ross W. Harrington, William Clegg. Phosphido-bis(borane) complexes of the alkaline earth metals. Dalton Transactions 2021, 50 (3) , 1019-1024. https://doi.org/10.1039/D0DT03895DAnastasia V. Blake, Taylor V. Fetrow, Zachary J. Theiler, Bess Vlaisavljevich, Scott R. Daly. Homoleptic uranium and lanthanide phosphinodiboranates. Chemical Communications 2018, 54 (44) , 5602-5605. https://doi.org/10.1039/C8CC02862AHerbert Binder, Martin Hein. Chalcogeno boron hydrides. Coordination Chemistry Reviews 1997, 158 , 171-232. https://doi.org/10.1016/S0010-8545(97)90057-6M. Baudler, C. Block. Beitr�ge zur Chemie des Phosphors. 240 [1]. Zum reaktiven Verhalten von Diphosphan-boran, P2H4 � BH3. Zeitschrift f�r anorganische und allgemeine Chemie 1996, 622 (12) , 2042-2047. https://doi.org/10.1002/zaac.19966221207Heinrich Nöth, Richard Ullmann. Über cyclische und bicyclische Hydrazinbis (phosphine). Chemische Berichte 1976, 109 (5) , 1942-1963. https://doi.org/10.1002/cber.19761090535S.G. SHORE. Nido- and Arachno-Boron Hydrides. 1975,,, 79-174. https://doi.org/10.1016/B978-0-12-509650-8.50008-7L.H. Long. The Reaction Chemistry of Diborane. 1974,,, 201-296. https://doi.org/10.1016/S0065-2792(08)60293-9. References. 1974,,, 307-350. https://doi.org/10.1016/S0066-4103(08)60358-0Erwin Mayer. Tris(boran)phosphit und Tetrakis(boran)phosphat. Angewandte Chemie 1971, 83 (12) , 446-447. https://doi.org/10.1002/ange.19710831217Erwin Mayer. Trisboranephosphite and Tetrakisboranephosphate Ions. Angewandte Chemie International Edition in English 1971, 10 (6) , 416-417. https://doi.org/10.1002/anie.197104162Anton B. Burg. The borane(III) complexes of (CH3)3PPCF3. Journal of Inorganic and Nuclear Chemistry 1971, 33 (6) , 1575-1581. https://doi.org/10.1016/0022-1902(71)80592-4P. Pardasani, R. T. Pardasani, A. Pelter. 2 Boron-11 NMR. Chemical shift. ,,, 10-108. https://doi.org/10.1007/10426834_3P. Pardasani, R. T. Pardasani, A. Pelter. 2 Boron-11 NMR. Coupling constant. ,,, 3-76. https://doi.org/10.1007/10426834_4P. Pardasani, R. T. Pardasani, A. Pelter. 2 Boron-11 NMR. References. ,,, 1-27. https://doi.org/10.1007/10426834_74H. D. Johnson, S. G. Shore. Recent developments in the chemistry of the lower boron hydrides. ,,, 87-145. https://doi.org/10.1007/BFb0050795E. Mayer, R.E. Hester. A study of the infrared, Raman, and nuclear magnetic resonance spectra of isotopically substituted bisboranohypophosphite anions. Spectrochimica Acta Part A: Molecular Spectroscopy 1969, 25 (1) , 237-243. https://doi.org/10.1016/0584-8539(69)80190-XW.G. Henderson, E.F. Mooney. Boron-11 Nuclear Magnetic Resonance Spectroscopy. 1969,,, 219-291. https://doi.org/10.1016/S0066-4103(08)60323-3


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