4.7 Article

Fabrication of doped SmBaCo2O5+δ double perovskites for enhanced solar-driven interfacial evaporation

期刊

CERAMICS INTERNATIONAL
卷 45, 期 18, 页码 24903-24908

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2019.08.131

关键词

Double perovskite; Solar evaporation; Sol-gel; Energy conversion

资金

  1. Natural Science Foundation of Jiangsu Province [BK20180777, BK20171299]
  2. Natural Science Foundation of Jiangsu Higher Education Institutions of China [18KJB430018]
  3. Scientific Research Foundation for Advanced Talents [CXL2018046]
  4. Science Innovation Foundation for Young Scientists, Nanjing Forestry University [CX2018012]
  5. Student's Platform for Innovation and Entrepreneurship Training Program in Jiangsu Province [201810298029Z]
  6. Student's Platform for Innovation and Entrepreneurship Training Program, Nanjing Forestry University [2018NFUSPITP602]

向作者/读者索取更多资源

As a promising solar-thermal energy conversion system, solar-driven vapor generation has been considered as a potential strategy to mitigate freshwater shortage and water contamination. Although remarkable advances have been achieved in this emerging field, the majority of solar evaporators that have been explored suffer from high cost, tedious synthetic protocols, and low robustness. Herein we demonstrate a facile two-step strategy for the synthesis of doped SmBaCo(2)O(5+delta )double perovskites by combining a sol-gel approach with high-temperature annealing. It is noteworthy that as-prepared double perovskites exhibit an outstanding broadband solar absorption of 93% as well as a relatively low thermal radiation loss compared to conventional carbon-based sunlight absorbers. The constructed double perovskite-based interfacial solar steam device reveals an impressive evaporation efficiency of 86% at a power density of 2 W/cm(2). Therefore, the explored solar evaporation system based on double perovskites Sm0.7Sr0.3BaCo2O5+delta offers a complementary approach for large-scale fabrication, high-reliability, and superior performance solar-to-thermal energy conversion systems.

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