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1,1'-Boranediyl-bis-piperidine, also known as bis(1-piperidinyl)methane or 1,1'-(methylidyne)bispiperidine, is an organic compound with the chemical formula C11H22BN2. It is a colorless, crystalline solid that is soluble in organic solvents. 1,1'-boranediyl-bis-piperidine is a derivative of piperidine, a cyclic amine, and features a boron atom bonded to two piperidine rings through a methylene bridge. 1,1'-Boranediyl-bis-piperidine is used as a ligand in coordination chemistry, particularly in the formation of metal complexes, and has potential applications in catalysis and materials science. It is also known for its ability to form stable adducts with various Lewis acids, which can be useful in the synthesis of new compounds and materials.

1589-73-7

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1589-73-7 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1589-73-7 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 1,5,8 and 9 respectively; the second part has 2 digits, 7 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 1589-73:
(6*1)+(5*5)+(4*8)+(3*9)+(2*7)+(1*3)=107
107 % 10 = 7
So 1589-73-7 is a valid CAS Registry Number.

1589-73-7Downstream Products

1589-73-7Relevant academic research and scientific papers

Metal tetrahydroborates and tetrahydroborato metallates, 30 [1]. Alkoxo-substituted alkali metal tetrahydroborates: Studies in solution and structures in the solid state

Knizek, J?rg,N?th, Heinrich,Warchhold, Markus

, p. 1079 - 1093 (2008/09/19)

Reactions of MBH4 (M = Li, Na, K) with tBuOH, Ph3COH, PhOH, F5C6OH, and 2,4-tBu2C6H 3OH in THF in a 1:1 ratio were followed by 11B NMR spectroscopy. No M[H2B(OR)2] species could be detected, but minor amounts of M[H3BOR] and larger amounts of M[HB(OR) 3]. In the reaction of LiBH4 with 2,4-tBu 2C6H3OH also a fair proportion of (RO) 2BH was generated. The perfluorophenolato borane (F5C 6O)2BH·THF was prepared from the phenol and BH 3·THF in THF solution. It is unstable to disproportionation. Compound (C6F5O)3B·THF was isolated and its crystal structure determined. Reaction of LiBH4 with F 5C6OH in hexane generated a solid that proved to be Li[H2B(OC6F5)2]. It is unstable in THF. On the other hand, 2,2′-dihydroxydiphenyl in the presence of secondary amines reacts to give Li[C12H8O 2B(NR2)2] (3-5). Li[B(O2C 12H8)2], 2, is formed when HN(tBu)Ph is used as a secondary amine. The unstable phthalatoborane H{C6H 4[C(O)O]2}BH·THF (7), is stabilized as its pyridine adduct (phth)BH·py (8). 7 reacts with 3 equivalents of LitBu to give [Li(HBtBu)3] (11), isolated as its tris(THF) solvate. Analogously, 7 reacts with LiNMePh to produce compound Li[HB(NMePh)3] (10). Similarly, 7 and NaOtBu (molar ratio 1:3) give access to Na[HB(OtBu) 3] (9). In attempts to grow single crystals, specimens resulting from a hexane solution showed that partial hydrolysis has occurred to give Na[HB(OtBu)3]·Na[(tBuO)2BO]·Na[tBuOB(O)H], which crystallizes as a centrosymmetric dimer. While catecholborane when treated with LitBu in THF and DME gave access to (dme)2Li[catB(tBu) 2], 12 (dme)2, several compounds were observed when Li piperidide was used as nucleophile. Amongst these, the most interesting one was (dme)(THF)Li2(cat)(catBH), 13 (dme)THF, the crystal structure of which was determined. In all cases where the borate species carried OR groups the O atoms of the RO or PhO group coordinate with the alkali metal cation. DFT calculations for the series of anions H4-nBXn- showed that HBX3- is the most stable species for X = F, OH, NH2. This confirms experimental results.

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