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Controlled synthesis of monodispersed spherical ruthenium powders
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作者 Feng-Shuo Xu Hao Cui +7 位作者 Man-Men liu Jia-Lin Chen Ming Wen Chuan-Jun Wang Wei Wang Song Li Xu-Dong Sun shao-hong liu 《Rare Metals》 SCIE EI CAS CSCD 2023年第12期4246-4254,共9页
Monodispersed spherical Ru powders are essential for fabricating high-performance Ru sputtering targets,which have applications in very-large-scale integration circuits and magnetic recording devices.However,the synth... Monodispersed spherical Ru powders are essential for fabricating high-performance Ru sputtering targets,which have applications in very-large-scale integration circuits and magnetic recording devices.However,the synthesis of such powders remains a major challenge.Here,we reported the synthesis of monodispersed spherical Ru powders through controlling the molar ratio of SO_(4)^(2-)to Ru^(3+)in urea homogeneous precipitation solution and the annealing conditions.Without the addition of(NH4)2SO_(4)into the reaction solution,only gel-like precipitation particles were obtained.Once introducing(NH_(4))_(2)SO_(4) into the reaction solution and controlling the molar ratio of SO_(4)^(2-)to Ru3+between 0.50 and 1.00,monodispersed spherical precursor powders were obtained.The nucleation and growth of monodispersed spherical precursor particles in solution were found to conform to LaMer's model.Through controlled annealing at 450℃in a hydrogen atmosphere,the obtained metallic Ru powder with an average particle size of 135 nm inherited the spherical morphology and excellent dispersity from the monodispersed spherical precursor powders.These results and findings would deepen the understanding of the preparation of monodispersed Ru and Ru-like powders. 展开更多
关键词 RUTHENIUM Sputtering target Spherical powder Integration circuits Magnetic recording
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新型高分子基多孔炭材料的设计制备与功能化策略 被引量:3
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作者 刘绍鸿 黄俊龙 +1 位作者 唐友臣 吴丁财 《高分子学报》 SCIE CAS CSCD 北大核心 2021年第7期679-686,I0001,共9页
多孔炭材料具有孔隙率丰富、导电率高、结构稳定以及物理化学性质可调等优点,广泛应用于能源储存与转换、吸附分离、催化、石油化工和生物医药等领域.原料结构是影响多孔炭材料结构和性能的关键因素.高分子理化结构丰富可调,且具有良好... 多孔炭材料具有孔隙率丰富、导电率高、结构稳定以及物理化学性质可调等优点,广泛应用于能源储存与转换、吸附分离、催化、石油化工和生物医药等领域.原料结构是影响多孔炭材料结构和性能的关键因素.高分子理化结构丰富可调,且具有良好的成炭性和形貌继承性,是制备高性能多孔炭材料的理想原料.本专论结合近期国内外研究进展以及我们课题组相关工作,系统总结了高分子衍生多孔炭材料的直接炭化法和模板法设计制备理论,讨论了炭骨架功能化策略,归纳了高分子的化学结构及微观形貌对多孔炭材料的孔道与骨架结构的影响规律,并展望了这一领域未来的研究方向. 展开更多
关键词 高分子 多孔炭材料 结构设计 可控制备 功能化
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Multifunctional Templating Strategy for Fabrication of Fe,N-Codoped Hierarchical Porous Carbon Nanosheets 被引量:2
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作者 Yu-heng Lu You-chen Tang +4 位作者 Ru-liang liu Chuan-fa Li shao-hong liu You-long Zhu Ding-cai Wu 《Chinese Journal of Polymer Science》 SCIE EI CAS CSCD 2022年第1期2-6,共5页
Due to the unique physical and chemical merits including excellent electrical conductivity,superior chemical stability,and tunable carbon framework,two-dimensional(2 D)porous carbon nanosheets have drawn increasing re... Due to the unique physical and chemical merits including excellent electrical conductivity,superior chemical stability,and tunable carbon framework,two-dimensional(2 D)porous carbon nanosheets have drawn increasing research interest and demonstrated promising potentials in various applications.However,regulating the nanostructure of 2 D porous carbon nanosheets by facile and efficient strategies remains a great challenge.Herein,we develop a new strategy to construct Fe,N-codoped hierarchical porous carbon nanosheets(Fe-N-HPCNS)by using 2 D Fe-Zn layered double hydroxides(Fe-Zn-LDH)as multifunctional templates.Fe-Zn-LDH could functionalize not only as 2 D structure directing agents but also as ternary hierarchical porogens for micro-,meso-and macropores and in situ Fe dopants.This multifunctional templating strategy toward 2 D porous carbon nanosheets can improve the utilization of templates and shows great advantages against conventional procedures that additional porogens and/or dopants are often needed. 展开更多
关键词 Carbon nanosheets Multifunctional templates Hierarchical pores Heteroatom doping
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Fabrication of Silver Yolk@Porous Janus Polymer Shell Nanospheres for Synergistic Catalysis 被引量:1
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作者 shao-hong liu Yan-huan Lin +5 位作者 Wen-tai Guo Shi-mei Li Wei-cong Mai Hui Wang Ruo-wen Fu Ding-cai Wu 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2020年第8期847-852,I0007,共7页
Yolk-shell nanostructures have recently attracted tremendous research interests in various areas because of their unique structural merits.Currently,there is an urgent need for developing porous shells with multifunct... Yolk-shell nanostructures have recently attracted tremendous research interests in various areas because of their unique structural merits.Currently,there is an urgent need for developing porous shells with multifunctional features to enhance their performance in various applications.Herein,advanced yolk-shell nanospheres have been facilely prepared by encapsulating silver nanoparticles with porous Janus polymer shells that consist of a hypercrosslinked polystyrene(xPS)outer layer and a tethered poly(acrylic acid)(PAA)brush lining.The xPS outer layer possesses well-developed porosity as mass diffusion pathways.More importantly,the tethered PAA brushes with customized carboxyl groups exhibit great affinity toward specific species(e.g.,cationic dyes),leading to their enrichment from the bulk solution into the interior cavity.The unusual combination of highly porous outer layers with customizable inbuilt polymer linings in the porous Janus shells endows them with great promise for synergistically catalytic degradation of cationic dyes. 展开更多
关键词 Yolk-shell nanostructure Janus shell Selective diffusion Synergistic catalysis
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