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Earth-Abundant Transition Metal Hydride Complexes for Dehydrocoupling and Hydrosilylation Catalysis
DownloadFall 2015
The research presented in this thesis details the synthesis of transition metal hydride complexes, with the focus on utilising these complexes for (a) the dehydrocoupling of amine-borane adducts, and (b) the hydrosilylation and hydroboration of unsaturated organic moieties. In both instances,...
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Empowering the Base Metals: Rational Design of Homogeneous Catalysts for Hydrotreatment, and Reduction of Organic Unsaturates
DownloadFall 2013
Hydrocarbon-soluble, low-coordinate, phosphoranimide-supported complexes of the base metals (iron, cobalt and nickel) were developed and evaluated for a range of stoichiometric and catalytic bond-forming and bond-breaking transformations. An unprecedented family of tetrametallic clusters of Co(I)...
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Fall 2020
The climate crisis has rendered the utilization of clean and renewable solar energy for chemical transformations extremely important. Plasmonic nanostructures can provide tunable optical and electronic properties that can drive chemical reactions, realizing the conversion of light energy into...
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Spring 2012
Group 14 semiconductor nanocrystals exhibit size-dependent optoelectronic properties through the influence of quantum size effects, notably intense photoluminescence (PL). A crucial step toward the realization of their technological potential is the development of effective methods to control the...
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Fall 2016
Nanoscale lithography on silicon is of interest for applications ranging from computer chip design to tissue interfacing. Block copolymer-based self-assembly, also called directed self-assembly (DSA) within the semiconductor industry, can produce a variety of complex nanopatterns on silicon, but...