TY - JOUR
T1 - Cycloaddition versus Cleavage of the C=S Bond of Isothiocyanates Promoted by Digallane Compounds with Noninnocent α-Diimine Ligands
AU - Zhang, Wei
AU - Dodonov, Vladimir A.
AU - Chen, Weixing
AU - Zhao, Yanxia
AU - Skatova, Alexandra A.
AU - Fedushkin, Igor L.
AU - Roesky, Peter W.
AU - Wu, Biao
AU - Yang, Xiao Juan
N1 - Publisher Copyright:
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2018/10/9
Y1 - 2018/10/9
N2 - Whereas the chemistry of single-bond activation by compounds of the main group elements has undergone some development in recent years, the cleavage of multiple bonds remains underexplored. Herein, the reactions of two digallanes bearing α-diimine ligands, namely, [L1Ga−GaL1] (1, L1=dpp-dad=[(2,6-iPr2C6H3)NC(CH3)]2) and [L2Ga−GaL2] (2, L2=dpp-bian=1,2-[(2,6-iPr2C6H3)NC]2C10H6), with isothiocyanates are reported. Reactions of 1 or 2 with isothiocyanates in 1:2 molar ratio proceeded with [2+4] cycloaddition of the C=S bond across the C2N2Ga metallacycle with formation of C−C and S−Ga single bonds to afford [L1(RN=C−S)Ga−Ga(S−C=NR)L1] (3, R=Me; 4, R=Ph) and [L2(RN=C−S)Ga−Ga(S−C=NR)L2] (8, R=allyl; 9, R=Ph). In the cases of 8 and 9, this cycloaddition is reversible. The digallanes reacted with 2 equiv of PhNCS in the presence of Na metal or at high temperatures through a unique reductive cleavage of the C=S bond to yield the disulfide-bridged digallium species [Na(THF)3]2[L1Ga(μ-S)2GaL1] (5), [L2Ga(μ-S)2GaL2] (10), and [Na(DME)3][L2Ga(μ-S)2GaL2] (11). Moreover, products 4 and 5 can further react with an excess of isothiocyanate, through cleavage of the C=S bond or cycloaddition, to give the bis- or mono-S-bridged complexes [Na(THF)2]2[L1(PhN=C−S)Ga(μ-S)2Ga(S−C=NPh)L1] (6) and [L1(PhN=C−S)Ga(μ-S)Ga(S−C=NPh)L1] (7). All the newly prepared compounds were characterized by elemental analysis, single-crystal X-ray diffraction, IR spectroscopy, NMR (3–9) or ESR spectroscopy (11), and DFT calculations.
AB - Whereas the chemistry of single-bond activation by compounds of the main group elements has undergone some development in recent years, the cleavage of multiple bonds remains underexplored. Herein, the reactions of two digallanes bearing α-diimine ligands, namely, [L1Ga−GaL1] (1, L1=dpp-dad=[(2,6-iPr2C6H3)NC(CH3)]2) and [L2Ga−GaL2] (2, L2=dpp-bian=1,2-[(2,6-iPr2C6H3)NC]2C10H6), with isothiocyanates are reported. Reactions of 1 or 2 with isothiocyanates in 1:2 molar ratio proceeded with [2+4] cycloaddition of the C=S bond across the C2N2Ga metallacycle with formation of C−C and S−Ga single bonds to afford [L1(RN=C−S)Ga−Ga(S−C=NR)L1] (3, R=Me; 4, R=Ph) and [L2(RN=C−S)Ga−Ga(S−C=NR)L2] (8, R=allyl; 9, R=Ph). In the cases of 8 and 9, this cycloaddition is reversible. The digallanes reacted with 2 equiv of PhNCS in the presence of Na metal or at high temperatures through a unique reductive cleavage of the C=S bond to yield the disulfide-bridged digallium species [Na(THF)3]2[L1Ga(μ-S)2GaL1] (5), [L2Ga(μ-S)2GaL2] (10), and [Na(DME)3][L2Ga(μ-S)2GaL2] (11). Moreover, products 4 and 5 can further react with an excess of isothiocyanate, through cleavage of the C=S bond or cycloaddition, to give the bis- or mono-S-bridged complexes [Na(THF)2]2[L1(PhN=C−S)Ga(μ-S)2Ga(S−C=NPh)L1] (6) and [L1(PhN=C−S)Ga(μ-S)Ga(S−C=NPh)L1] (7). All the newly prepared compounds were characterized by elemental analysis, single-crystal X-ray diffraction, IR spectroscopy, NMR (3–9) or ESR spectroscopy (11), and DFT calculations.
KW - N ligands
KW - cycloaddition
KW - gallium
KW - isothiocyanates
KW - sulfur
UR - http://www.scopus.com/inward/record.url?scp=85051660734&partnerID=8YFLogxK
U2 - 10.1002/chem.201802469
DO - 10.1002/chem.201802469
M3 - Article
C2 - 30016556
AN - SCOPUS:85051660734
SN - 0947-6539
VL - 24
SP - 14994
EP - 15002
JO - Chemistry - A European Journal
JF - Chemistry - A European Journal
IS - 56
ER -