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Synthesis and reactivity of hypersilylsilylene and catalytic applications of organosilicon and lithium compounds

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dc.contributor.advisor Sen, S. S.
dc.contributor.author Bisai, M. K.
dc.date.accessioned 2021-10-12T06:30:12Z
dc.date.available 2021-10-12T06:30:12Z
dc.date.issued 2020-12-07
dc.identifier.uri http://dspace.ncl.res.in:8080/xmlui/handle/20.500.12252/5996
dc.description This thesis represents the compounds with main group elements as viable alternatives to sparse, expensive, and toxic transition metal catalysts for organic transformations, such as hydroboration and cyanosilylation. In addition, the thesis comprised of the synthesis and reactivity of a new silylene towards various small molecules. en
dc.description.abstract The escalating need for environmentally benign and sustainability in chemical processes has led the compounds with main group elements as viable alternatives to sparse, expensive, and toxic transition metal catalysts. This thesis presents the synthesis and reactivity of a hypersilylsilylene and catalytic applications of organosilicon and easily accessible lithium compounds. The first chapter of the thesis describes the development of the chemistry of silylene and application of the compounds with main group elements in small molecule activation and catalysis with recent literature precedence. The second chapter describes the synthetic protocol of hypersilylsilylene and its applications for various small molecules activation, including boranes, organic azides, and chlorophosphines. In this chapter, hypersilylsilylene was shown as a new synthon to synthesize different unusual silicon compounds. In the third chapter, a neutral penta-coordinated Si(IV) compound has been utilized for the catalytic hydroboration of aldehydes and aldimines. We also discussed the practical applicability of simple and easily accessible lithium compounds for the catalytic hydroboration and cyanosilylation of aldehydes and ketones under ambient conditions; and this is depicted in the fourth chapter of the thesis. Besides, the catalytic activity was extended further for the other less activated and more important unsaturated compounds such as esters, amides, and carbodiimides. On the other hand, the fifth chapter explores the effectiveness of the same lithium compounds for the selective anti-Markovnikov hydroboration of alkenes and alkynes. The methodology was extended further to the reduction of biologically important terpenes. en
dc.description.sponsorship CSIR for JRF and SRF, AcSIR for academic degree en
dc.format.extent 282 p. en
dc.language.iso en_US en
dc.publisher CSIR-National Chemical Laboratory- Pune en
dc.subject Main group, Silylene, Silicon, Lithium, Hydroboration en
dc.title Synthesis and reactivity of hypersilylsilylene and catalytic applications of organosilicon and lithium compounds en
dc.type Thesis(Ph.D.) en
local.division.division Catalysis and Inorganic Chemistry Division en
dc.description.university AcSIR en
dc.identifier.accno TH2489


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