Metal Oxide Nanostructures 2019
DOI: 10.1016/b978-0-12-811512-1.00006-0
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Oxide materials for energy applications

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Cited by 7 publications
(14 citation statements)
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“…In the application of photovoltaic solar energy, as it is widely abundant, such devices may in principle provide more sustainable clean, green energy without toxic or dangerous gases (Nunes et al, 2018). The designed materials for these applications have increased a lot in recent years, which has transformed the total cost of this technology, likely is due to the fast increase in efficiency as well as the simplicity of fabrication of these devices.…”
Section: Eletrochemical Potencial Usementioning
confidence: 99%
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“…In the application of photovoltaic solar energy, as it is widely abundant, such devices may in principle provide more sustainable clean, green energy without toxic or dangerous gases (Nunes et al, 2018). The designed materials for these applications have increased a lot in recent years, which has transformed the total cost of this technology, likely is due to the fast increase in efficiency as well as the simplicity of fabrication of these devices.…”
Section: Eletrochemical Potencial Usementioning
confidence: 99%
“…More recently, several strategies have widely been adopted to the development of the next generation of photovoltaic devices, especially based on emerging materials (Protesescu et al, 2015;Brenner et al, 2016;Manser et al, 2016;Saliba et al, 2016). These novel emerging materials are chemically and thermally stables with incredible potential for many applications and, in some cases, can widely be compatible with a huge variety of low-cost manufacturing (Masi et al, 2018;Nunes et al, 2018;Fernandes et al, 2019;Ramirez et al, 2019). Such emerging materials, however, have its chemistry still very little explored, which may in principle be an option interesting for the appearance of many technologies.…”
Section: Eletrochemical Potencial Usementioning
confidence: 99%
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“…Among the possible material classes, metal oxide based-nanosystems offer an extremely attractive playground bridging together the variety of properties of inorganic materials and the unique features of nanostructures. 5,[37][38][39] A careful modification of the latter by suitable preparation techniques represents a valuable tool to underpin advanced applications linked to safety and sustainability. Among the different routes, inherent advantages are offered by hydrothermal approaches, 13,40,41 liquid phase processes, 32,42,43 chemical vapor deposition (CVD), 9,19,44 and template syntheses, [45][46][47] the latter providing a unique way to produce nanoarchitectures with uniform dimensions.…”
Section: Chiara Maccatomentioning
confidence: 99%