Hollow spherical titanium dioxide nanoparticles for energy and environmental applications_中国颗粒学会

在线阅读

Volurnes 72-75 (2023)

Volurnes 60-71 (2022)

Volurnes 54-59 (2021)

Volurnes 48-53 (2020)

Volurnes 42-47 (2019)

Volurnes 36-41 (2018)

Volurnes 30-35 (2017)

Volurnes 24-29 (2016)

Volurnes 18-23 (2015)

Volurnes 12-17 (2014)

Volurne 11 (2013)

Volurne 10 (2012)

Volurne 9 (2011)

Volurne 8 (2010)

Volurne 7 (2009)

Volurne 6 (2008)

Volurne 5 (2007)

Volurne 4 (2006)

Volurne 3 (2005)

Volurne 2 (2004)

Volurne 1 (2003)

在线阅读

Partic. vol. 22 pp. 13-23 (October 2015)
doi: 10.1016/j.partic.2015.03.001

Invited review and perspective

Hollow spherical titanium dioxide nanoparticles for energy and environmental applications

Peng Zhang, Ang Li, Jinlong Gong*

Show more

jlgong@tju.edu.cn

Highlights

    • Synthetic approaches of hollow spherical TiO2 nanoparticles were reviewed. • Their performances in DSSCs, photocatalysts and batteries were reviewed. • Perspectives on further improving their synthesis and characterization methods were drawn.

Abstract

Hollow spherical titanium dioxide (TiO2) nanoparticles possess unique properties toward energy and environmental applications, because of the intrinsic properties of TiO2 and benefits induced by their hollow structure. A detailed understanding of TiO2 hollow spheres will promote their use in sustainable energy and environmental applications. This perspective details current methods for synthesizing hollow spherical TiO2 nanoparticles, and their performance in dye-sensitized solar cells, photocatalysts, and batteries. This perspective will promote the design and innovative thinking on the application of hollow spherical metal oxide nanoparticles.

Graphical abstract

Image for unlabelled figure

Keywords

TiO2; Hollow sphere; Dye-sensitized solar cell; Photocatalyst; Battery