Bibliographic Details
| Title: |
One-dimension-based spatially ordered architectures for solar energy conversion. |
| Authors: |
Liu, Siqi1,2, Tang, Zi-Rong2, Sun, Yugang3, Colmenares, Juan Carlos4, Xu, Yi-Jun1,2 |
| Source: |
Chemical Society Reviews. 8/7/2015, Vol. 44 Issue 15, p5053-5075. 23p. |
| Subjects: |
Solar energy conversion, Energy conservation in buildings, Fossil fuels, Alternative fuels, Solar energy, Photocatalysis |
| Abstract: |
The severe consequences of fossil fuel consumption have resulted in a need for alternative sustainable sources of energy. Conversion and storage of solar energy via a renewable method, such as photocatalysis, holds great promise as such an alternative. One-dimensional (1D) nanostructures have gained attention in solar energy conversion because they have a long axis to absorb incident sunlight yet a short radial distance for separation of photogenerated charge carriers. In particular, well-ordered spatially high dimensional architectures based on 1D nanostructures with well-defined facets or anisotropic shapes offer an exciting opportunity for bridging the gap between 1D nanostructures and the micro and macro world, providing a platform for integration of nanostructures on a larger and more manageable scale into high-performance solar energy conversion applications. In this review, we focus on the progress of photocatalytic solar energy conversion over controlled one-dimension-based spatially ordered architecture hybrids. Assembly and classification of these novel architectures are summarized, and we discuss the opportunity and future direction of integration of 1D materials into high-dimensional, spatially organized architectures, with a perspective toward improved collective performance in various artificial photoredox applications. [ABSTRACT FROM AUTHOR] |
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| Database: |
Engineering Source |