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14篇 您的检索式:作者名="Helmut Colfen"
    题名 作者 年代 出处 被引量
1Complex sphericalBaCO3 superstructures self-assembled by a facile mineralization pro- cess under control of simple polyelectrolyte 显示文摘YU Shuhong COLFEN Helmut XU Anwu 2004Crystal Growth and Design2004,4,1:1
2Complex Spherical BaCO3 Superstructures Self-Assembled by a Facile Mineralization Process under Control of Simple Polyelectrolytes 显示文摘Shu-Hong Yu Helmut Colfen An-Wu Xu 2004Crystal Growth & Design2004,4,1:1
3Complex Spherical BaCO3 Superstructures Self-assembled by a Facile Mineralization Process under Control of Simple Polyelectrolytes 显示文摘Shu-Hong Yu Helmut Colfen An-Wu Xu 2004Crystal Growth and Design2004,4,1:1
4Control of barite morphology by double - hydrophilic block copolymers 显示文摘Limin Qi Helmut Colfen and Markus Antonietti 2000Chemistry of Materials2000,2,:1
5Anisotropic nanowire growth via a self-confined amorphous template process: A reconsideration on the role of amorphous calcium carbonate显示文摘有各种各样的形态学的钙碳酸盐晶体在许多 biospecimens 并且人工地被发现了综合结构。通常,在形态学的差异能被归因于在特定的晶体脸和环境之间的相互作用的不同类型或模板为 CaCO 3 晶体的生长使用了。在另一方面,各向同性的非结晶的钙碳酸盐(ACC ) 在 vivo 并且在 vitro 系统为两个作为另外的水晶的钙碳酸盐形式的先锋被认出了。然而,这里,我们建议导致单人赛水晶的方解石 nanowires 的各向异性的生长的一个自我限制的非结晶的模板过程。由猛抛的 nanoparticles 的集会开始了,方解石 nanowires 经由部分使结晶的 ACC nanodroplets 的连续降水成长了到他们的尖端上。然后,在尖端的水晶的领域,从部分使结晶的 nanodroplets 被产生,在 nanowire 的内部联合了形成一个单人赛水晶的核心。ACC 域在外面被离开并且自发地形成了保护的壳延迟 CaCO 3 的降水作为一个模板指导了 nanowires 的高度各向异性的生长到 nanowire 并且这样的方面表面上。Li-Bo Mao Lei Xue Denis Gebauer Lei Liu Xiao-Fang Yu Yang-Yi Liu Helmut Colfen Shu-Hong Yu 2016Nano Research2016,9,5:1
6Nonclassical crystallization: mesocrystals and morphology change of CaCO3 crystals in the presence of a polyelectrolyte additive 显示文摘Wang Tongxin Colfen Helmut Antonietti Markus 2005Journal of the American Chemical Society2005,127,10:1
7Crystal design of calcium carbonate microparticles using double-hydrophilic block copolymers显示文摘Helmut Colfen Markus Antonietti 1998American Chemical Society1998,14,:1
8High Quality CeO2 Nanocrystals Stabilized by a Double Hydrophilic Block Copolymer显示文摘Yu Shu-Hong Colfen Helmut Armin Fischer 2004Colloids and Surfaces A:Physicochemical and Engineering Aspects2004,243,13:1
9Complex Spherical BaCO3 Superstructures Self-assembled by a Facile Mineralization Process under Control of Simple Polyelectrolytes 显示文摘Shu-Hong Yu Helmut Colfen Xu An-Wu 2004Crystal Growth and Design2004,4,1:1
10Synthesis and characterization of CdS nanoparticles stabilized by double-hydrophilic block copolymers显示文摘Limin Qi Helmut Colfen Markus Antonietti 2001Nano Letters2001,1,2:1
11Double-hydrophilic block copolymers:synthesisand application as novel surfactants and crystal growth modifiers显示文摘Helmut Colfen 2001Macromol Rapid Commun2001,22,:1
12Emerging artificial Bouligand-type structural materials显示文摘Until now, the demand for lighter,stronger, tougher and more wearresistant materials has remained unmet for diverse applications, as many structural materials prepared by traditional engineering manufacturing techniques seem to be approaching their performance limits (1)Natural biominerals.Helmut Colfen 2018National Science Review2018,5,6:0
13Bamboo nodes show nature's wisdom显示文摘Bamboo(Phyllostachys edulis)is a biological structural material featuring tall stalks and excellent mechanical properties[1].It has been applied to many engineering areas such as construction,transportation and energy[2].Laminates are the main material processing and application forms,where the tubular bamboo internodes with unidirectionally arranged fibrous vascular bundles play key roles[1,2].Helmut Colfen 2023National Science Review2023,10,2:0
14Bivalve hinge reveals the structural design of fatigue-resistant deformable ceramic materials显示文摘Sophisticated principles of design and material integration of biomaterials have long been a major source of inspiration for the development of artificial materials[1,2].In recent years,inspired by the multi-level architecture of biomineral materials such as shell nacre[3,4],tooth enamel[5],and bone[6],several strong and tough bioinspired structural materials like advanced ceramic composites and metallic alloys have been reported.Helmut Colfen 2023Science China Materials2023,66,10:0
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