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Titlebook: Sol-Gel Materials for Energy, Environment and Electronic Applications; Suresh C. Pillai,Sarah Hehir Book 2017 Springer International Publi

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An Introduction to Sol-Gel Processing for Aerogels,o ageing and drying of wet gels. Sol-gel processing can be used to form a range of architectures from fibres and films to fine powders and monoliths, however this chapter will focus on sol-gel processing for aerogels specifically.
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Sol-Gel Materials for Varistor Devices, in terms of controlled grain size, improved grain boundary area and homogeneous dopant distribution at the grain boundaries. The chapter concludes with a discussion on the recent research interests on the sol-gel ceramic–polymer varistors and studies on varistor-epoxy, ZnO-PANI, ZnO-PANI-PVA, GaAs-PANI-PE, Si–Polymer varistor composites.
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Book 2017The use of sol-gel technology has become a hotbed for cutting edge developments in many fields due to the accessibility of advanced materials through low energy processes. The book offers a broad view of this growing research area from basic science through high-level applications with the potential
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Sol-Gel Derived Functional Coatings for Optics,perties of sol-gel coatings will be described together with a critical analysis of various liquid deposition techniques. In the second part, recent examples of functional (and multifunctional) antireflective coatings and photonic crystals will be highlighted.
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Sol-Gel Chemistry Engineering for Corrosion Protection,ies for preparing such corrosion protection systems are easily recognised. Perspectives on the research are presented allowing for the identification of opportunities for further avenues of investigation. The key findings from the analysis are presented in the conclusion.
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Graphene-Incorporated Sol-Gel Materials for Energy Applications,al is an ideal candidate for next generation energy devices. This chapter gives an overview on the recent research on graphene-incorporated sol-gel materials for energy conversion and storage applications, such as supercapacitors, solar cells, lithium-ion batteries, and fuel cells.
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Sol-Gel Lanthanum Phosphate: A Versatile Ceramic Material for Diverse Functional Applications,–1100 °C are realized. This chapter gives an overview of lanthanum phosphate ceramics and includes a detailed case study on the synthesis, morphology and phase formation of lanthanum phosphate nano-composites using a Sol-Gel approach and its application as coatings and monoliths for a variety of functional applications.
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An Introduction to Sol-Gel Processing for Aerogels, been adapted as a popular route for the preparation of nanostructures. The process supports the preparation of intricate three-dimensional networks extended throughout a liquid phase (a gel) through the agglomeration of nanoparticles dispersed within a colloidal suspension (sol). In order to gain a
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