Development of Molybdenum Disulfide MoS2 nanostructures and thin films for Hydrogen Evolution Reaction HER and Supercapacitor applications
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Abstract
The demand for energy is steadily escalating and the raw materials for
newlinefossil fuels are on the decline. Developing clean, eco-friendly, and
newlineeconomically viable energy sources are vitally important for satisfying the
newlineenergy craving of the world s growing population. Hydrogen is considered
newlineas one of the sustainable sources of energy. When hydrogen combines with
newlineoxygen in a fuel cell, electric charge is produced. The by-products of this
newlineelectrochemical reaction are water and heat, and no greenhouse gases are
newlinereleased in this case. Hydrogen produced usually from fossil fuels, is
newlineaccompanied with the emission of carbon dioxide, which eventually leads
newlineto global warming. Sustainable methods to obtain hydrogen are therefore
newlineimportant. Hydrogen evolution reaction (HER) is one of the approaches to
newlineproduce hydrogen from water splitting. HER is a thermodynamically uphill
newlineprocess, and a proper catalyst is essential to reduce the activation energy
newlinebarrier. Conventional HER catalysts like platinum (Pt), palladium (Pd) and
newlinegold (Au) being rare and expensive, have limited practical utility. Thus an
newlineeconomically viable and abundant HER catalyst is essential. This thesis systematically evaluates the crystal structure, growth direction
newlineand morphology at various growth parameters with the aim of proposing
newlinesuitable strategies to improve the electrochemical (both HER and
newlinesupercapacitor) properties of MoS2 through optimized synthesis
newlinetechniques.
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