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国家自然科学基金(20923001)

作品数:7 被引量:53H指数:4
相关作者:申文杰李勇塔娜刘景月徐红更多>>
相关机构:中国科学院亚利桑那州立大学更多>>
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Iron based PEC cell for overall water splitting
<正>PEC water splitting has been studied since Fujishima and Honda''''s creative work on TiO2 , since then many...
Jingfeng HanGuiji LiuCan Li
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Morphology-dependent nanocatalysis on metal oxides被引量:13
2012年
The design and fabrication of solid nanomaterials are the key issues in heterogeneous catalysis to achieve desired performance. Traditionally, the main theme is to reduce the size of the catalyst particles as small as possible for maximizing the number of active sites. In recent years, the rapid advancement in materials science has enabled us to fabricate catalyst particles with tuna- ble morphology. Consequently, both size modulation and morphology control of the catalyst particles can be achieved inde- pendently or synergistically to optimize their catalytic properties. In particular, morphology control of solid catalyst particles at the nanometer level can selectively expose the reactive crystal facets, and thus drastically promote their catalytic performance. In this review, we summarize our recent work on the morphology impact of Co304, CeO2 and Fe203 nanomaterials in catalytic reactions, together with related literature on morphology-dependent nanocatalysis of metal oxides, to demonstrate the importance of tuning the shape of oxide-nanocatalysts for prompting their activity, selectivity and stability, which is a rapidly growing topic in heterogeneous catalysis. The fundamental understanding of the active sites in morphology-tunable oxides that are enclosed by reactive crystal facets is expected to direct the development of highly efficient nanocatalysts.
LI YongSHEN WenJie
关键词:NANOCATALYSIS
A comparative study in structure and reactivity of “FeO_x-on-Pt” and “NiO_x-on-Pt” catalysts被引量:1
2015年
Oxide nanostructures grown on noble metal surfaces are often highly active in many reactions,in which the oxide/metal interfaces play an important role.In the present work,we studied the surface structures of Fe Ox-on-Pt and Ni Ox-on-Pt catalysts and their activity to CO oxidation reactions using both model catalysts and supported nanocatalysts.Although the active Fe O1x structure is stabilized on the Pt surface in a reductive reaction atmosphere,it is prone to change to an Fe O2x structure in oxidative reaction gases and becomes deactivated.In contrast,a Ni O1x surface structure supported on Pt is stable in both reductive and oxidative CO oxidation atmospheres.Consequently,CO oxidation over the Ni O1x-on-Pt catalyst is further enhanced in the CO oxidation atmosphere with an excess of O2.The present results demonstrate that the stability of the active oxide surface phases depends on the stabilization effect of the substrate surface and is also related to whether the oxide exhibits a variable oxidation state.
Rentao MuQiang FuXiaoguang GuoXuejun XuDali TanXinhe Bao
Pt-表层限域的表面FeO_x结构用于低温CO氧化反应(英文)被引量:4
2013年
通过简单的浸渍-还原并随后在酸性溶液中处理制备了Pt-Cu双金属催化剂.利用电感耦合等离子体发射光谱、X射线衍射和X射线光电子能谱对不同处理条件下的Pt-Cu纳米粒子的结构和组成进行了表征.研究发现,Pt-Cu催化剂在高温H2中还原形成了PtCu3合金结构,酸洗处理后形成了包含Pt-骨架(Pt-skeleton)的表面结构和PtCu3合金核的纳米粒子.而Pt-骨架结构又可通过在H2中退火转变为规整的Pt-表层(Pt-skin)结构.Pt-表层表面修饰Fe氧化物后在CO选择氧化反应中表现出较好的催化性能.通过此方法制备的三金属Pt-Cu-Fe催化剂可达到与Pt-Fe相近的高活性,并且催化剂中Pt的用量大大降低.
徐红傅强包信和
关键词:一氧化碳氧化铁氧化物
La(OH))_3和La_2O_2CO_3纳米棒的合成及其催化Claisen-Schmidt缩合反应性能(英文)被引量:3
2014年
通过调节溶液的pH值,在水热条件下合成出长径比为2-45的La(OH)3纳米棒.对水热合成过程中间体的结构演变分析,发现高碱度有利于小尺寸晶核的形成,La(OH)3晶体结构的各向异性导致这些晶种沿着C轴方向生长,进而形成纳米棒结构.将La(OH)3纳米棒前驱体于773 K焙烧可以得到长径比为2-20的La2O2CO3纳米棒.随着长径比的增加,La2O2CO3纳米棒暴露的(110)晶面逐渐增加,La3+-O2-碱性位的数目也从0.08增加到0.24 mmol/g.因此,在Claisen-Schmidt缩合反应中,La2O2CO3纳米棒催化剂上的反应速率随着长径比的增加而逐渐增大.
王非塔娜李勇申文杰
关键词:氢氧化镧纳米棒晶面
基于催化应用调控氧化铈纳米材料的形貌(英文)被引量:17
2013年
催化剂的设计、合成和结构调控是获得优异性能的关键.传统的策略主要是尽量减小催化剂颗粒尺寸以增加活性中心的数目,即尺寸效应.近年来,材料科学的快速发展使得在纳米尺度上调变催化剂的尺寸和形貌成为可能,特别是通过形貌调控可暴露更多的高活性晶面,大幅度提高催化性能,即纳米催化中的形貌效应.因此,调节催化剂的尺寸与形貌可以单独或协同优化材料的性能.氧化铈作为催化剂的重要组分与结构、电子促进剂被广泛应用于多相催化剂体系.本文总结了近期氧化铈材料形貌可控合成的进展,包括主要的合成策略和表征方法;进而分析了氧化铈和金-氧化铈催化材料的形貌效应,指出金-氧化铈之间独特的相互作用与载体形貌密切相关;阐述了氧化铈纳米材料因暴露晶面的差异而获得不同催化性能的化学机制.
塔娜刘景月申文杰
关键词:二氧化铈纳米棒纳米管
金属氧化物纳米催化的形貌效应被引量:19
2012年
纳米结构催化剂的设计与制备是多相催化的核心问题之一.提高催化活性的传统方法是减小催化剂粒子的尺寸以暴露更多的表面活性位,即纳米催化中的尺寸效应,但这种方法往往带有一定程度的经验性和随机性.近年来,随着纳米材料科学的快速发展,在溶液体系中通过自下而上的合成技术已经可以在纳米尺度上有效调变固体催化剂粒子的形貌.通过纳米催化材料的形貌可控合成,可选择性地暴露高活性或特定能量晶面,从而大幅度提升催化反应活性、选择性和稳定性,也就是纳米催化中的形貌效应,这也是当前纳米催化研究的热点之一.本文以作者近年来研究的Co3O4、CeO2和Fe2O3为重点,总结了纳米结构金属氧化物在多相催化反应中的形貌效应,分析了氧化物暴露晶面的化学性质对催化性能的作用机制.这种基于形貌效应的纳米催化不仅加深了在纳米尺度甚至原子层次上对催化剂构-效关系的认知,而且对设计和开发实用高效催化剂也具有重要的理论价值.
李勇申文杰
Co_3O_4 nanosheets:synthesis and catalytic application for CO oxidation at room temperature被引量:1
2014年
Hexagonal β-Co(OH)2 nanosheets with edge length of 50 nm and thickness of 10 nm were hydrothermally synthesized with the aid of triethylamine.Upon calcination at 350°C in air,the β-Co(OH)2 nanosheets was converted into Co3O4 nanosheets with a similar dimension.Structural analyses during the calcination process identified that the β-Co(OH)2 precursor was initially dehydrated to HCoO2 and subsequently transferred into Co3O4.When being applied to catalyze CO oxidation at room temperature,the Co3O4 nanosheets exhibited a higher activity than the conventional spherical nanoparticles.This was perhaps related to the partial exposure of the{112}planes over the Co3O4 nanosheets.The porous structure generated during the calcination process also provided significant amounts of surface defects,which might contribute to the enhanced catalytic activity as well.
LV YongGeLI YongTA NaSHEN WenJie
关键词:CO3O4NANOSHEETSNANOCATALYSIS
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