Physical Sciences
Advancing the fundamentals of electrocatalysis with the use of earth abundant materials for future of energy and transportation
Technology development of compound semiconductor devices for optoelectronic and electronic applications
Engineering photoluminescence of tungsten sulfide through doping and electrical biasing
Next generation dynamic capacitive and inductive power transfer topologies in green e-transportation systems
Low- temperature epitaxial growth of high mobility ge1-xsnx channel material for pt/tin/high-k/GeOXNY/Ge1-XSnX/Ge/Si transistor to the integration of next generation CMOS and optoelectronics device on cost effective Si platform
Tailoring the nanoscale properties of graphene and its derivatives via strain engineering for next generation nanoelectronics devices
Large unit cell materials with intrinsically low thermal conductivity for thermoelectric application
Exciton manipulation in layered dichalcogenides- group II-VI semiconductor nanostructured materials
Curve crossing problems: Semi-analytical method for arbitrary coupling
Organic-inorganic hybrids for photochromic photocatalytic and antioxidant applications
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