期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
电子级硫酸制备工艺及发展现状 被引量:6
1
作者 曹攀 李天祥 朱静 《无机盐工业》 CAS 北大核心 2012年第3期8-11,共4页
电子级硫酸广泛应用于大规模集成电路(IC)、半导体等微电子工业,用作清洗和蚀刻剂。随着中国微电子工业的高速发展,电子级硫酸的需求量日益增加,电子级硫酸有着良好的应用前景。介绍了电子级硫酸的质量标准、生产工艺、检测手段、应用... 电子级硫酸广泛应用于大规模集成电路(IC)、半导体等微电子工业,用作清洗和蚀刻剂。随着中国微电子工业的高速发展,电子级硫酸的需求量日益增加,电子级硫酸有着良好的应用前景。介绍了电子级硫酸的质量标准、生产工艺、检测手段、应用、包装技术,重点介绍了近年来电子级硫酸制备技术的改进,并对电子级硫酸的发展前景进行了展望。 展开更多
关键词 电子级硫酸 质量标准 制备工艺 检测
下载PDF
Non‐noble metal single‐atom catalyst with MXene support:Fe1/Ti_(2)CO_(2) for CO oxidation 被引量:3
2
作者 Chun Zhu Jin‐Xia Liang +1 位作者 Yang‐Gang Wang Jun Li 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第7期1830-1841,共12页
MXenes have attracted considerable attention owing to their versatile and excellent physicochemi‐cal properties.Especially,they have potential applications as robust support for single atom cata‐lysts.Here,quantum c... MXenes have attracted considerable attention owing to their versatile and excellent physicochemi‐cal properties.Especially,they have potential applications as robust support for single atom cata‐lysts.Here,quantum chemical studies with density functional theory are carried out to systemati‐cally investigate the geometries,stability,electronic properties of oxygen functionalized Ti_(2)C(Ti_(2)CO_(2))supported single‐atom catalysts M_(1)/Ti_(2)CO_(2)(M=Fe,Co,Ni,Cu Ru,Rh,Pd,Ag Os,Ir,Pt,Au).A new non‐noble metal SAC Fe_(1)/Ti_(2)CO_(2) has been found to show excellent catalytic performance for low‐temperature CO oxidation after screening the group 8‐11 transition metals.We find that O_(2) and CO adsorption on Fe_(1) atom of Fe_(1)/Ti_(2)CO_(2) is favorable.Accordingly,five possible mechanisms for CO oxidation on this catalyst are evaluated,including Eley‐Rideal,Langmuir‐Hinshelwood,Mars-van Krevelen,Termolecular Eley‐Rideal,and Termolecular Langmuir‐Hinshelwood(TLH)mechanisms.Based on the calculated reaction energies for different pathways,Fe_(1)/Ti_(2)CO_(2) shows excellent kinet‐ics for CO oxidation via TLH mechanism,with distinct low‐energy barrier(0.20 eV)for the rate‐determining step.These results demonstrate that Fe_(1)/Ti_(2)CO_(2) MXene is highly promising 2D materials for building robust non‐noble metal catalysts. 展开更多
关键词 Single‐atom catalyst Density functional theory Ti_(2)CO_(2)MXene CO oxidation
下载PDF
Mn-corrolazine-based 2D-nanocatalytic material with single Mn atoms for catalytic oxidation of alkane to alcohol 被引量:2
3
作者 Chun Zhu Jin-Xia Liang +2 位作者 Yang Meng Jian Lin Zexing Cao 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第6期1030-1039,共10页
Heterogenization of organic-macrocyclic metal catalysts is one of the simplest and most efficient methods for effective separation of products and cyclic application of a catalyst.By using an environmentally friendly ... Heterogenization of organic-macrocyclic metal catalysts is one of the simplest and most efficient methods for effective separation of products and cyclic application of a catalyst.By using an environmentally friendly Mn-corrolazine catalyst as the building unit,which can directly oxidize organic substrates under oxygen atmosphere and mild conditions,we theoretically constructed a novel two-dimensional(2D)Mn-corrolazine nanocatalytic material with high catalytic activity.In this material,each Mn atom maintains its electronic configuration in the monomer and can directly activate O2 as the single-atom catalyst(SAC)center to form a radical-like[Mn]-O-O under mild visible-light irradiation conditions.The newly generated[Mn]–O–O can efficiently and selectively oxidize C–H bonds to form alcohol species through H-abstraction and the rebound reaction.Moreover,the catalytic reaction is easily regulated by an external electric field along its intrinsic Mn–O–O reaction axis.The current study provides a theoretical foundation for further experimental studies and practical applications of the Mn-corrolazine-based SAC. 展开更多
关键词 Single-atom catalyst HETEROGENIZATION Two-dimensional nanomaterials First-principles calculations C–H bond activation
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部