期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
层状可调铁掺杂氮化碳及其光芬顿催化性能研究 被引量:1
1
作者 李琛 周烈兴 +2 位作者 李雪梅 解林坤 柴希娟 《大连理工大学学报》 CAS CSCD 北大核心 2022年第3期228-237,共10页
光芬顿反应是一种用于去除环境中有机污染物的高级氧化技术.通过两步法制备了一系列热剥离型铁掺杂g-C_(3)N_(4)(Fe-CN),考察了铁掺杂量和热剥离时间对Fe-CN结构、形貌的影响及其在中性多相芬顿体系中的催化降解性能.结果表明,铁离子被... 光芬顿反应是一种用于去除环境中有机污染物的高级氧化技术.通过两步法制备了一系列热剥离型铁掺杂g-C_(3)N_(4)(Fe-CN),考察了铁掺杂量和热剥离时间对Fe-CN结构、形貌的影响及其在中性多相芬顿体系中的催化降解性能.结果表明,铁离子被成功引入氮化碳的结构中,使氮化碳从致密的块状堆积结构转变为独特的木耳状片层介孔结构.Fe-CN在多相芬顿体系中表现出良好的光催化性能.其中,铁掺杂量为0.5%,热剥离时间为3 h时的样品0.5%Fe-3h的光催化效果最优,其在光催化体系、暗芬顿体系和光芬顿体系中,60 min时光催化降解亚甲基蓝(MB)溶液的降解率分别为72%、83%和99.8%,为纯CN的1.67、1.93和2.32倍. 展开更多
关键词 光芬顿 g-C_(3)N_(4) 层状可调 光催化
下载PDF
Fabrication of tunable hierarchical MXene@AuNPs nanocomposites constructed by self-reduction reactions with enhanced catalytic performances 被引量:8
2
作者 Kaikai Li1 2 Tifeng Jiao1 《Science China Materials》 SCIE EI CSCD 2018年第5期728-736,共9页
MXene, a new type of two-dimensional layered transition metal carbide material differing from graphene, demonstrates intriguing chemical/physical properties and wide applications in recent years. Here, the preparation... MXene, a new type of two-dimensional layered transition metal carbide material differing from graphene, demonstrates intriguing chemical/physical properties and wide applications in recent years. Here, the preparation of the self-assembled MXene-gold nanoparticles (MXene@AuNPs) nanocomposites with tunable sizes is reported. The nano- composites are obtained via the self-reduction reactions of MXene material in a HAuCI4 solution at room temperature. The sizes of the Au particles can be well-controlled by reg- ulating the self-reduction reaction time. They can greatly in- fluence the catalytic behaviors of the MXene@AuNPs composites. MXene@AuNPs composites with optimized re- duction time show high catalytic performances and good cycle stability for model catalytic reactions of nRro-compounds, such as 2-nitrophenol and 4-nitrophenol. This work demon- strates a new approach for the preparation of tunable MXene- based self-assembled composites. 展开更多
关键词 MXene self-reduction gold nanoparticle nitro-compound NANOCOMPOSITES
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部