国产精品igao视频网网址不卡日韩,亚洲综合在线电影,亚洲婷婷丁香,黄色在线网站噜噜噜

Links
Contact Info.
  • Address:上海浦東新區(qū)金海路2360號
  • Zip:201209
  • Tel:02150216301
  • Fax:
  • Email:yuwei@sspu.edu.cn
Current Location :> Home > News > Text
祝賀朱桂華同學(xué)的論文發(fā)表在Energy期刊上

Enhancement of photothermal conversion performance using nanofluids based on bimetallic Ag-Au alloys in nitrogen-doped graphitic polyhedrons作者:Guihua Zhu, Lingling Wang, Naici Bing, Huaqing Xie, Wei Yu

關(guān)鍵字:Composite nanofluids Plasmonic bimetallic alloy Nitrogen-doped graphitic polyhedrons Photothermal conversion Solar energy

論文來源:期刊

具體來源:Energy 183 (2019) 747-755

發(fā)表時間:2019年

The working fluids with higher solar thermal conversion performance within broadband spectrum ranges are of great concern for direct absorption solar collectors (DASCs). Both metal nanoparticles with localized surface plasmon resonance (LSPR) effects and carbon nanomaterials have unique spectral absorption behaviors and have shown better photothermal performance in DASCs. In this paper, we attempted to prepare composite nanofluids including plasmonic bimetallic alloy and carbon nanomaterials to realize enhanced solar absorption and photothermal conversion performance. By taking ZIF-8-derived nitrogen-doped graphitic polyhedrons (ZNGs) as carrier, plasmonic bimetallic Ag-Au alloy nanoparticles were loaded on them by an impregnation-reduction method successfully. Ag-Au/ZNGs ethylene glycol nanofluids showed significant broadband absorption in the visible and near-infrared spectrum range at a lower concentration. Comparing to ethylene glycol, the photothermal conversion effeiency of all ZNGs nanofluids increased remarkablely. Plasmonic bimetallic Ag-Au alloy nanoparticles further improved the photothermal conversion efficiency, which was up to 74.35% for Ag-Au ZNGs nanofluids compared with 72.41%, 70.35% for Au/ZNGs, Ag/ZNGs respectively. This work presents a new way to enhance solar energy absorption and improve solar thermal conversion efficiency of nanofluids for DASCs