期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
等离子体辅助制备的Co_(3)O_(4)光催化甲苯净化性能研究 被引量:1
1
作者 齐敏 高栋梁 +3 位作者 赵帅 乔旭 崔咪芬 费兆阳 《石油化工高等学校学报》 CAS 2023年第2期42-50,共9页
等离子体改性是提高催化材料性能的有效途径。利用水热法合成了Co_(2)(OH)_(2)CO_(3)前驱体,通过氧气低温等离子体技术,制备了表面改性的Co_(3)O_(4)催化剂(Co_(3)O_(4)-P),并对其进行了XRD、O_(2)-TPD、H2-TPR、SEM、TEM、XPS、FTIR、R... 等离子体改性是提高催化材料性能的有效途径。利用水热法合成了Co_(2)(OH)_(2)CO_(3)前驱体,通过氧气低温等离子体技术,制备了表面改性的Co_(3)O_(4)催化剂(Co_(3)O_(4)-P),并对其进行了XRD、O_(2)-TPD、H2-TPR、SEM、TEM、XPS、FTIR、Raman和UV-Vis等表征。结果表明,等离子体处理可以降低Co_(3)O_(4)中Co元素的平均价态,在其表面形成更多的缺陷点位,降低Co_(3)O_(4)的Co-O键能,增强其低温还原性能;在全太阳光谱的光强为776 mW/cm^(2)、反应空速为30000 mL/(g·h)、甲苯质量分数为500μg/g的测试条件下,Co_(3)O_(4)-P的甲苯降解率为100.0%,其值约为通过焙烧法制备的Co_(3)O_(4)催化剂(Co_(3)O_(4)-T)的2倍。 展开更多
关键词 等离子体技术 Co_(3)O_(4) 甲苯 光热催化
下载PDF
Enhanced single-nanoparticle collisions for the hydrogen evolution reaction in a confined microchannel
2
作者 Si-Min Lu Mengjie Chen +3 位作者 Huilin Wen Hao-Wei Wang Ziyi Yu Yi-Tao Long 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第11期2815-2819,共5页
Single nanoparticle(NP)collisions technique has been widely employed in electrocatalysis.However,the short collision duration of single NPs hinders the further improvement in their electrocatalytic performance.Here,to... Single nanoparticle(NP)collisions technique has been widely employed in electrocatalysis.However,the short collision duration of single NPs hinders the further improvement in their electrocatalytic performance.Here,to increase the dynamic collision duration of single NPs in the electron tunneling region,enhanced near-wall hindered diffusion is introduced in the stochastic collision process by coupling a Au ultramicroelectrode(UME)with a confined microchannel.In the case of single palladium nanoparticle(Pd NP)collisions for the hydrogen evolution reaction(HER),the hydrodynamic trapping confined in the microchannel effectively permits the activation of the HER on the single Pd NPs.The microchannel-based Au UME is promising in the application of single-NP collisions to energy conversion. 展开更多
关键词 Single-nanoparticle collisions Confined microchannel Hydrodynamic trapping Collision duration Hydrogen evolution reaction
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部