Title : Mechanism of the cooperative Si-H bond activation at Ru-S bonds.

Pub. Date : 2015 Jul 1

PMID : 29218203






2 Functional Relationships(s)
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1 Moreover, the calculations reveal that formation of the hydrosilane adducts proceeds via barrierless electrophilic activation of the hydrosilane by sterically controlled eta1 (end-on) or eta2 (side-on) coordination of the Si-H bond to the Lewis acidic metal center, followed by heterolytic cleavage of the Si-H bond through a concerted four-membered transition state. Silicon secreted phosphoprotein 1 Homo sapiens
2 Moreover, the calculations reveal that formation of the hydrosilane adducts proceeds via barrierless electrophilic activation of the hydrosilane by sterically controlled eta1 (end-on) or eta2 (side-on) coordination of the Si-H bond to the Lewis acidic metal center, followed by heterolytic cleavage of the Si-H bond through a concerted four-membered transition state. Silicon secreted phosphoprotein 1 Homo sapiens