2014
DOI: 10.1039/c4dt01216j
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A readily accessible ruthenium catalyst for the solvolytic dehydrogenation of amine–borane adducts

Abstract: The use of the readily available complex [Ru(p-Cym)(bipy)Cl]Cl as an efficient and robust precatalyst for homogeneously catalysed solvolysis of amine-borane adducts to liberate the hydrogen content of the borane almost quantitatively is being presented. The reactions can be carried out in tap water, and in aqueous mixtures with non-deoxygenated solvents. The system is also efficient for the dehydrocoupling of dimethylamine-borane under solvent-free conditions.

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Cited by 45 publications
(33 citation statements)
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References 47 publications
(71 reference statements)
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“…Ti], Rh4-6 clusters, RhCl 3 , colloidal Rh/[Oct 4 N) Cl, iridium, palladium, rhodium, ruthenium complexes, Rh/Al 2 0 3 , Pt (0)/amyl amine, laurate-stabilized Rh (0), Re complexes, Ru/ZIF-8, Pd (0)/MOF catalysts were tested [19][20][21][22][23][24][25][26][27][28] . Synthesis and characterization of palladium/cobalt nanomaterials stabilized with activated carbon on the release of hydrogen from DMAB were performed.…”
Section: Dimethylamine Borane Dehydrogenation Reaction [Cpmentioning
confidence: 99%
“…Ti], Rh4-6 clusters, RhCl 3 , colloidal Rh/[Oct 4 N) Cl, iridium, palladium, rhodium, ruthenium complexes, Rh/Al 2 0 3 , Pt (0)/amyl amine, laurate-stabilized Rh (0), Re complexes, Ru/ZIF-8, Pd (0)/MOF catalysts were tested [19][20][21][22][23][24][25][26][27][28] . Synthesis and characterization of palladium/cobalt nanomaterials stabilized with activated carbon on the release of hydrogen from DMAB were performed.…”
Section: Dimethylamine Borane Dehydrogenation Reaction [Cpmentioning
confidence: 99%
“…Table 12 & 13 shows the hydrogen and oxygen and hydrogen bound atoms were refined as O--H..O = 0.839 (18) to 0.843(19); A'...H...A" = 117(2) to 177 (2).The rest of the hydrogen atoms were calculated geometrically and refined with a riding model U(eq ) = 1/3 of the trace of the orthogonalized U Tensor with bond lengths of C-H being 0.95 Å( see Table 2).…”
Section: Refinement Detailsmentioning
confidence: 99%
“…Organic and Medicinal Chemistry International Journal C47 0.0099(7) 0.0183(9) 0.0195(9) -0.0004(7) 0.0000(6) -0.0003(6) The Temperature Factor has the Form of Exp(-T) Where T = 8*(Pi**2)*U*(Sin(Theta)/Lambda)**2 for Isotropic Atoms T = 2*(Pi**2)*Sumij(h(i)*h(j)*U(i,j)*Astar(i)*Astar(j)), for Anisotropic Atoms. Astar (i) [18] are Reciprocal Axial Lengths a h(i) are the Reflection Indices.…”
mentioning
confidence: 99%
“…A number of catalysts have recently been employed in dehydrogenation of dimethylamine borane [9]: IrCl 3 , RhCl(PPh 3 ) 3, [Cp*Rh(µ-Cl)Cl 2 ], [Rh(1,5-cod) 2 [12]; laurate-stabilized Rh(0) [19]; dimethylammoniumhexanoate stabilized Rh(0) [20]; aminopropyltriethoxysilane stabilized Ru(0) [21]; oleylamine stabilized Ru(0) [22], rhenium complexes [23]; Rh 4-6 clusters [24], RhCl(PHCy 2 ) 3 [25],RuNPs/ZIF-8 [26], [Ru(p-Cym)(bipy)Cl]Cl [27], Pd(0)/MOF [28],amylamine stabilized Pd(0) [29].…”
Section: Introductionmentioning
confidence: 99%