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光功能杂化凝胶玻璃器件研究进展
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作者 黄招娣 唐小燕 +2 位作者 杨清芳 王晶京 谢政 《硅酸盐学报》 EI CAS CSCD 北大核心 2024年第8期2722-2737,共16页
光功能杂化凝胶玻璃是一类具有广泛应用潜力的新型杂化材料与器件,集成融合了凝胶玻璃和光功能材料的特性和优势。本文主要综述了多种玻璃基质为载体的光功能杂化玻璃器件,尤其是凝胶玻璃基质作为光学材料载体的杂化凝胶玻璃器件的最新... 光功能杂化凝胶玻璃是一类具有广泛应用潜力的新型杂化材料与器件,集成融合了凝胶玻璃和光功能材料的特性和优势。本文主要综述了多种玻璃基质为载体的光功能杂化玻璃器件,尤其是凝胶玻璃基质作为光学材料载体的杂化凝胶玻璃器件的最新研究进展,系统介绍了非线性光学激光防护/调制杂化玻璃器件和发光/转换杂化玻璃器件2大类。最后,结合当前研究进展,展望了光功能杂化凝胶玻璃未来发展过程中可能面临的问题和挑战。本综述将有望为光功能杂化材料与玻璃的设计制备、性能优化以及器件制备和应用提供一定的启示,推动光功能杂化凝胶玻璃器件的发展。 展开更多
关键词 光功能杂化 凝胶玻璃 非线性 转换 学器件
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Amorphous CoOx coupled carbon dots as a spongy porous bifunctional catalyst for efficient photocatalytic water oxidation and CO2 reduction 被引量:4
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作者 Wanjun Sun Xiangyu Meng +5 位作者 Chunjiang Xu Junyi Yang Xiangming Liang Yinjuan Dong Congzhao Dong Yong Ding 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第12期1826-1836,共11页
Cobalt-based oxides,with high abundance,good stability and excellent catalytic performance,are regarded as promising photocatalysts for artificial photosynthetic systems to alleviate foreseeable energy shortages and g... Cobalt-based oxides,with high abundance,good stability and excellent catalytic performance,are regarded as promising photocatalysts for artificial photosynthetic systems to alleviate foreseeable energy shortages and global warming.Herein,for the first time,a series of novel spongy porous CDs@CoOx materials were synthesized to act as an efficient and stable bifunctional photocatalyst for water oxidation and CO2 reduction.Notably,the preparation temperatures visibly influence the morphologies and photocatalytic performances of the CDs@CoOx.Under the optimal conditions,a maximum O2 yield of 40.4% and pretty apparent quantum efficiency(AQE)of 58.6% at 460 nm were obtained over CDs@CoOx-300 for water oxidation.Similarly,the optimized sample CDs@CoOx-300 manifests significant enhancement on the CO2-to-CO conversion with a high selectivity of 89.3% and CO generation rate of 8.1μmol/h,which is superior to most previous cobalt-based catalysts for CO2 reduction.The composite CDs@CoOx-300 not only exposes more active sites but also facilitates electron transport,which results in excellent photocatalytic activity.In addition,the boosted photocatalytic behavior is attributed to the synergistic effect between CoOx and CDs,which was verified by the photocatalytic activity control experiments and electrochemical characterization.The work offers a novel strategy to fabricate a high performance bifunctional photocatalyst for water oxidation and CO2 reduction. 展开更多
关键词 Carbon dots coupled CoOx Bifunctional photocatalyst Water oxidation CO2 reduction Synergistic effect
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