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Co_3O_4 nanoparticles assembled on polypyrrole/graphene oxide for electrochemical reduction of oxygen in alkaline media 被引量:3
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作者 任素贞 郭亚男 +6 位作者 马少博 毛庆 吴丹丹 杨莹 景洪宇 宋雪旦 郝策 《Chinese Journal of Catalysis》 EI CSCD 北大核心 2017年第7期1281-1290,共10页
The development of highly efficient catalysts for cathodes remains an important objective of fuel cell research. Here, we report Co3O4 nanoparticles assembled on a polypyrrole/graphene oxide electrocatalyst (C... The development of highly efficient catalysts for cathodes remains an important objective of fuel cell research. Here, we report Co3O4 nanoparticles assembled on a polypyrrole/graphene oxide electrocatalyst (Co3O4/Ppy/GO) as an efficient catalyst for the oxygen reduction reaction (ORR) in alkaline media. The catalyst was prepared via the hydrothermal reaction of Co2+ ions with Ppy-modified GO. The GO, Ppy/GO, and Co3O4/Ppy/GO were characterized using scanning electron microscopy, Fourier-transform infrared spectroscopy, and X-ray photoelectron spectroscopy. The incorporation of Ppy into GO nanosheets resulted in the formation of a nitrogen-modified GO po-rous structure, which acted as an efficient electron-transport network for the ORR. With further anchoring of Co3O4 on Ppy/GO, the as-prepared Co3O4/Ppy/GO exhibited excellent ORR activity and followed a four-electron route mechanism for the ORR in alkaline solution. An onset potential of -0.10 V vs. a saturated calomel electrode and a diffusion limiting current density of 2.30 mA/cm^2 were achieved for the Co3O4/Ppy/GO catalyst heated at 800 ℃; these values are comparable to those for noble-metal-based Pt/C catalysts. Our work demonstrates that Co3O4/Ppy/GO is highly active for the ORR. Notably, the Ppy coupling effects between Co3O4 and GO provide a new route for the preparation of efficient non-precious electrocatalysts with hierarchical porous structures for fuel cell applications. 展开更多
关键词 Non-precious metal electrocatalyst CO3O4 POLYPYRROLE Graphene Oxygen reduction reaction Proton-exchange membrane fuel cell
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无机金属纳米材料在生物成像和光热治疗中的研究进展
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作者 沈明佳 曹晴 +2 位作者 张满杰 景洪宇 赵震 《中国科学:化学》 CAS CSCD 北大核心 2024年第2期160-181,共22页
光热治疗(photothermal therapy, PTT)具有无创性、选择性高以及毒副作用低等优点,是生物医学领域重要的肿瘤治疗方法. PTT的关键在于找到良好的光热转化剂.金属基纳米材料由于较高的光热转化效率和可调控的表面结构,在该疗法中表现出... 光热治疗(photothermal therapy, PTT)具有无创性、选择性高以及毒副作用低等优点,是生物医学领域重要的肿瘤治疗方法. PTT的关键在于找到良好的光热转化剂.金属基纳米材料由于较高的光热转化效率和可调控的表面结构,在该疗法中表现出巨大潜力.同时,某些金属基纳米材料还可作为造影剂用于生物成像,对肿瘤进行诊断和监测,指导PTT对肿瘤进行精确热消融,实现肿瘤的诊疗一体化.本文阐述了无机金属基纳米材料在生物成像中的应用,归纳了金基、铋基和过渡金属基纳米光热转化剂的研究现状,分析了PTT在临床转化中存在的问题和解决策略.最后,对金属基纳米材料在生物成像和光热治疗中的未来发展进行了展望. 展开更多
关键词 金属基纳米材料 生物成像 光热治疗 诊疗一体化 临床转化
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