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- W2900452413 abstract "Human society relies upon a clean environment and energy for its survival and development. The progress of human civilization has gained pace since the Industrial Revolution. However, the conventional industrial practices, excessive use of pesticides in agriculture, and dependence upon fossil fuels for energy has led to serious environmental impacts. The limited availability of fossil fuels may lead to energy crises in the future. Hence, the development of green technologies has become a top priority across the globe to overcome these issues. The field of photocatalysis has become a highly attractive area of research, and it is highly promising in energy and environment-related applications. The energy from the sun can be thought to be stored as chemical energy of hydrogen with the aid of the photocatalytic process. Photocatalysis can also be successfully applied to water treatment, and several water pollutants and harmful organic compounds have been degraded by a number of photocatalysts. ZnO and TiO2 are two wide bandgap semiconductors which are highly investigated for water splitting by photocatalytic and photoelectrochemical methods and photocatalytic water purification. The two share some common characteristics, such as similar bandgaps, charge carrier mobility, low toxicity, and low cost. Their wide bandgaps make them inactive in the visible solar spectrum, and both these photocatalysts are less porous and have low reusability, which makes them unsuitable for practical applications in H2 generation and water purification. This chapter emphasizes different ways to grant these photocatalysts visible activity, the use of different carrier materials to enhance their porosity and number of active sites, and the effects of nanostructure morphology on photocatalytic activity." @default.
- W2900452413 created "2018-11-29" @default.
- W2900452413 creator A5025201112 @default.
- W2900452413 creator A5030393984 @default.
- W2900452413 creator A5070815924 @default.
- W2900452413 creator A5090106395 @default.
- W2900452413 creator A5091846793 @default.
- W2900452413 date "2019-01-01" @default.
- W2900452413 modified "2023-10-14" @default.
- W2900452413 title "Recent Progress in TiO2- and ZnO-Based Nanostructured Hybrid Photocatalysts for Water Purification and Hydrogen Generation" @default.
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