期刊封面

主办单位:天津大学

出版单位:天津市

期刊级别CAINSPECPж(AJ)EIWJCI 卓越期刊

影响因子:1.28

国际标准刊号ISSN:1006-4982

国内统一刊号:12-1248/T

出版周期:双月

创刊年份:1995

学科分类:工程科技II

编辑团队:Weihao Liu、Qingtao Liu、Xin Wan、Jianglan Shui

期刊宗旨和范围:financially supported by the Natural Science Foundation of Beijing Municipality (No. Z200012); the National Natural Science Foundation of China (Nos. U21A20328 and 21975010); the National Key Research and Development Program of China (No. 2021YFB4000601); the China Postdoctoral Science Foundation (No. 2022M720013); the Postdoctoral Fellowship Program of CPSF (No. GZB20230926);

栏目设置:括太阳能和光伏、制氢和储氢、燃料电 池、二氧化碳转换和储能、储能和转换材料、电池和超级电容器、生物燃料、煤炭

Transactions of Tianjin University 电话投稿

期刊简介:Non-precious metal electrocatalysts(such as Fe–N–C materials) for the oxygen(O2) reduction reaction demand a high catalyst loading in fuel cell devices to achieve workable performance. However, the extremely low solubility of O2 in water creates severe mass transport resistance in the thick catalyst layer of Fe–N–C catalysts. Here, we introduce silicalite-1 nanocrystals with hydrophobic cavities as sustainable O2 reservoirs to overcome the mass transport issue of Fe–N–C catalysts. The extra O2 supply to the adjacent catalysts significantly alleviated the negative effects of the severe mass transport resistance. The hybrid catalyst(Fe–N–C@silicalite-1) achieved a higher limiting current density than Fe–N–C in the half-cell test. In the H2–O2 and H2–air proton exchange membrane fuel cells, Fe–N–C@silicalite-1 exhibited a 16.3% and 20.2% increase in peak power density compared with Fe–N–C, respectively. The O2-concentrating additive provides an effective approach for improving the mass transport imposed by the low solubility of O2 in water.

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投稿方式:电话投稿

联系方式:电话: 022-27400281

定价:30.00

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