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检索条件"机构=Institute of Inorganic Chemistry"
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Particle Size and Crystal Phase Effects in Fischer-Tropsch Catalysts
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《Engineering》2017年 第4期3卷 467-476页
作者:Jin-xun Liu Peng Wang Wayne Xu Emiel J. M. HensenLaboratory of Inorganic Materials Chemistry Schuit Institute of Catalysis Department of Chemical Engineering and Chemistry Eindhoven University of Technology Eindhoven 5600 MB The Netherlands National Institute of Clean-and-Low-Carhon Energy Beijing 102211 China 
费托合成(FTS)是近年来越发重要的能源转化途径,它可将一氧化碳和氢气的合成气转化为液态燃料和化学品,合成气的原料来自煤炭、天然气或生物质。在费托合成反应中,分散的过渡金属纳米粒子作为催化剂,用于催化以碳-碳键生成为基础的反应...
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Design of molecule-based magnetic conductors
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《Nano Research》2014年 第12期7卷 1832-1842页
作者:Naureen Akhtar Graeme R. Blake Roberto Felici Heinz Amenitsch Thomas T. M. Palstra Petra RudolfZernike Institute for Advanced Materials University of Groningen Nijenborgh 4 NL-9747AG Groningen The Netherlands ESRF BP 220 F-38043 Grenoble Cedex 9 France Institute of Inorganic Chemistry Graz University of Technology Stremayerg. 9/IV A-8010 Graz Austria 
在工艺的设备启用讲道理地设计的薄电影的使用是在材料科学的一个公认的目标。然而,与控制得好的尺寸和生长方向用高度订的超分子的体系结构构造如此的薄电影留下了一逃犯目标。这里,我们介绍一个 layer-by-layer 协议种包括 arachid...
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光子晶体异质界面工程调控光生载流子分离及高效水分解性能研究
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《Science China Materials》2022年 第1期65卷 124-130页
作者:张苗苗 刘翩翩 谈浩 张惠 黄方志 张坤 李士阔Anhui Province Key Laboratory of Chemistry for Inorganic/Organic Hybrid Functionalized MaterialsKey Laboratory of Structure and Functional Regulation of Hybrid Materials(Anhui University)Ministry of EducationSchool of Chemistry and Chemical EngineeringInstitute of Physical Science and Information TechnologyAnhui UniversityHefei 230601China National Synchrotron Radiation LaboratoryUniversity of Science and Technology of ChinaHefei 230029China Bengbu Institute of Product Quality Supervision and Inspection ResearchBengbu 233040China 
活性材料中的载流子转移是太阳能高效利用的一大挑战.本文通过固相反应原位制备了三维多孔TiO_(2)/Fe_(2)TiO_(5)/Fe_(2)O_(3)(TFF)反蛋白石结构,用于光电化学分解水.Fe_(2)TiO_(5)作为桥接层与TiO_(2)和Fe_(2)O_(3)紧密相连,降低了界...
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碳基电极材料在能源存储器件中的催化效应
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《Science China Materials》2022年 第12期65卷 3229-3242页
作者:夏会聪 昝灵兴 魏一帆 郭恺 闫文付 邓德会 张佳楠School of Materials Science and EngineeringZhengzhou UniversityZhengzhou 450001China State Key Laboratory of CatalysisDalian Institute of Chemical PhysicsChinese Academy of SciencesDalian 116023China Key Laboratory of Chemical Reaction Engineering of Shaanxi ProvinceCollege of Chemistry&Chemical EngineeringYan’an UniversityYan’an 716000China State Key Laboratory of Inorganic Synthesis and Preparative Chemistry and College of ChemistryJilin UniversityChangchun 130012China Key Laboratory of Advanced Energy Catalytic and Functional Material Preparation of Zhengzhou CityZhengzhou 450012China 
催化效应是实现电极材料高效电化学能量转换和存储的关键因素之一.碳基复合材料因具有优异的物化性能,被广泛地合成并应用于电极材料.电极材料在能源存储器件中表现出的容量往往超过其理论容量值,额外容量的产生原因及形成机制尚未得到...
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Tracking morphologies at the nanoscale: Self-assembly of an amphiphilic designer peptide into a double helix superstructure
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《Nano Research》2015年 第6期8卷 1822-1833页
作者:Karin Kornmueller Ilse Letofsky-Papst Kerstin Gradauer Christian Mikl Fernando Cacho-Nerin Mario Leypold Walter Keller Gerd Leitinger Heinz Amenitsch Ruth PrasslInstitute of Biophysics Medical University ofGraz BioTechMed-Graz 8010 Graz Austria Institute for Electron Microscopy and Nanoanalysis Graz University of Technology and Graz Centre for Electron Microscopy 80 10 Graz A us tria Institute of Inorganic Chemistry Graz University of Technology 8010 Graz Austria Institute of Organic Chemistry Graz University of Technology 8010 Graz Austria Institute for Molecular Biosciences KarI-Franzens-University Graz 8010 Graz Austria Research Unit Electron Microscopic Techniques Institute of Cell Biology Histology and Embryology Medical University of Graz 80 10 Graz A us tria Center for Medical Research Medical University of Graz 8010 Graz Austria 
层次自己组装是在自然的一个基本原则,它产生是为在纳米技术的创新材料的开发的灵感的令人震惊的超分子的体系结构。这里,我们在场锥形的 amphiphilic 设计者肽的唯一的结构。当追踪它的集中依赖者形态学时,我们在集会过程的开始观...
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含生物素的双功能螯合剂合成及[^(99)Tc^m(CO)_3(H_2O)_3]^+标记
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《核化学与放射化学》2006年 第1期28卷 43-48页
作者:胡骥 Stefan Munderwiler Roger Alberto中国原子能科学研究院同位素研究所北京102413 Institute of Inorganic Chemistry University of Zurich 
设计合成了一种新的用于生物素偶联的双功能螯合剂N--α(2-皮考基)-N-ε-D-生物素基-L-赖氨酸甲酯(PLB),并完成其Re(CO)3-PLB配合物的合成及化学结构的表征。[99Tcm(CO)3(H2O)3]+的标记条件研究表明,PLB配体浓度在10μmol/L以上,pH在正...
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氧化铈纳米粒子的抗菌机理及应用(英文)
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《Science China Materials》2019年 第11期62卷 1727-1739页
作者:张萌真 张超 翟欣昀 罗锋 杜亚平 严纯华Tianjin Key Lab for Rare Earth Materials and ApplicationsCenter for Rare Earth and Inorganic Functional MaterialsSchool of Materials Science and Engineering&National Institute for Advanced MaterialsNankai UniversityTianjin 300350China IMDEA NanoscienceFaraday 9Ciudad Universitaria de CantoblancoMadrid 28049Spain Beijing National Laboratory for Molecular SciencesState Key Laboratory of Rare Earth Materials Chemistry and ApplicationsPKU-HKU Joint Laboratory in Rare Earth Materials and Bioinorganic ChemistryCollege of Chemistry and Molecular EngineeringPeking UniversityBeijing 100871China College of Chemistry and Chemical EngineeringLanzhou UniversityLanzhou 730000China 
纳米材料因其特殊的抗菌机理,在抗菌领域得到了广泛应用.氧化铈纳米粒子是重要的抗菌材料之一,具有对正常细胞毒性低,且抗菌机理基于可逆价态转化的优势.目前已有许多关于氧化铈纳米粒子抗菌活性的研究报道,但系统性探究其抗菌机理的文...
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介电弹性体材料的新理解及其在全柔性人工心脏的应用
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《Science Bulletin》2021年 第10期66卷 981-990,M0003页
作者:武文杰 张双琨 吴战鹏 秦司晨 李凡珠 宋天夫 曹霞 王中林 张立群Center of Advanced Elastomer MaterialsState Key Laboratory of Organic-Inorganic CompositesBeijing University of Chemical TechnologyBeijing 100029China Engineering Research Center of Ministry of Education on Energy and Resource Saved ElastomersBeijing University of Chemical TechnologyBeijing 100029China Beijing Laboratory of Biomedical MaterialsBeijing University of Chemical TechnologyBeijing 100029China Beijing Institute of Nanoenergy and NanosystemsChinese Academy of SciencesBeijing 100140China Research Center for Bioengineering and Sensing TechnologyBeijing Key Laboratory for Bioengineering and Sensing TechnologySchool of Chemistry and Biological Engineeringand Beijing Municipal Key Laboratory of New Energy Materials and TechnologiesUniversity of Science and Technology BeijingBeijing 100083China Key Laboratory of Carbon Fiber and Functional PolymersBeijing University of Chemical Technology(Ministry of Education)Beijing 100029China School of Materials Science and EngineeringGeorgia Institute of TechnologyAtlantaGA 30332-0245USA State Key Laboratory of Alternate Electric Power System with Renewable Energy SourcesNorth China Electric Power UniversityBeijing 102206China 
介电弹性体材料是指在电场下可以发生形变的弹性体材料,通常认为,介电弹性体在电场下的电致形变是由麦克斯韦应力挤压造成的,是力引发的应变.然而按照这一理论,不同介电弹性材料的理论形变和实际形变差别很大,毫无相关性.本文提出了一...
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合理调控电子和应力效应制备具有高氧还原活性的PdM@Pt核壳结构催化剂
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《Science Bulletin》2020年 第16期65卷 1396-1404,M0004页
作者:南皓雄 苏亚琼 唐城 曹睿 李栋 喻嘉 刘全兵 邓怡杰 田新龙School of Chemical Engineering and Light IndustryGuangdong University of TechnologyGuangzhou 510006China Laboratory of Inorganic Materials&Catalysis.Schuit Institute of CatalysisEindhoven University of Technology5600 MB EindhovenThe Netherlands School of Chemical EngineeringThe University of AdelaideAdelaideSA 5005Australia Stanford Synchrotron Radiation LightsourceSLAC National Accelerator LaboratoryMenlo ParkCA 94025USA Beijing Key Laboratory of Green Chemical Reaction Engineering and TechnologyDepartment of Chemical EngineeringTsinghua UniversityBeijing 100084China The Key Laboratory of Fuel Cell Technology of Guangdong ProvinceSchool of Chemistry and Chemical EngineeringSouth China University of TechnologyGuangzhou 510641China Guangdong Engineering and Technology Research Center for Advanced NanomaterialsSchool of Environment and Civil EngineeringDongguan University of TechnologyDongguan 523808China State Key Laboratory of Marine Resource Utilization in South China SeaSchool of Chemical Engineering and TechnologyHainan UniversityHaikou 570228China 
核壳结构合金纳米粒子可在原子水平上对其界面相互作用和表面微结构进行调控,对设计具有高活性和耐久性的电催化剂具有重要意义.本文制备了一系列具有不同界面,以钯合金为内核、单原子铂层为壳的核壳结构催化剂,其中Pd3Fe@Pt1L催化剂展...
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