4.8 Review

Nanowires: Synthesis and Energy/Environmental Applications

期刊

ENERGY & ENVIRONMENTAL MATERIALS
卷 4, 期 4, 页码 544-561

出版社

WILEY
DOI: 10.1002/eem2.12158

关键词

hydroxyapatite; nanowire; application; energy; environment

资金

  1. National Natural Science Foundation of China [21875277]

向作者/读者索取更多资源

Hydroxyapatite (HAP) nanowires (NWs) have shown great potential in energy and environmental applications due to their biocompatibility, bioactivity, thermal stability, surface modification, and self-assembly properties. These NWs have been utilized in areas such as batteries, solar energy-assisted water evaporation, light-driven devices, insulation, fire-resistant materials, water and air purification, molecular detection, superhydrophobic surfaces, and high-strength nanocomposites. Future research directions for HAP NWs and their applications in energy and environmental fields are also discussed.
As the main inorganic component of human bones and teeth, hydroxyapatite (HAP) materials have been widely investigated for various applications especially in the biomedical field. Recently, HAP nanowires (HAP NWs) have attracted research interest in the energy and environment-related fields owing to their advantages such as excellent biocompatibility and bioactivity, high-thermal stability, surface modification and functionalization, and self-assembly to form nanoscale porous networked structure. In this review, we first briefly discuss the synthesis of HAP NWs. Then we focus on summarizing the foremost advances in energy and environment-related applications of HAP NWs, including the battery, solar energy-assisted water evaporation, light-driven self-propelled device, thermal insulation, fire-resistant inorganic paper, water purification, air purification, molecular detection, superhydrophobic surface, and high-strength nanocomposite materials. In addition, the future research directions on HAP NWs and their energy and environmental applications are proposed. This review aims to provide inspiration and stimulate extensive future studies in the energy and environmental applications of HAP NWs and other inorganic NWs.

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