期刊介绍英文:
Ceramics International covers the science of advanced ceramic materials. The journal encourages contributions that demonstrate how an understanding of the basic chemical and physical phenomena may direct materials design and stimulate ideas for new or improved processing techniques, in order to obtain materials with desired structural features and properties.
Ceramics International covers oxide and non-oxide ceramics, functional glasses, glass ceramics, amorphous inorganic non-metallic materials (and their combinations with metal and organic materials), in the form of particulates, dense or porous bodies, thin/thick films and laminated, graded and composite structures. Process related topics such as ceramic-ceramic joints or joining ceramics with dissimilar materials, as well as surface finishing and conditioning are also covered. Besides traditional processing techniques, manufacturing routes of interest include innovative procedures benefiting from externally applied stresses, electromagnetic fields and energetic beams, as well as top-down and self-assembly nanotechnology approaches. In addition, the journal welcomes submissions on bio-inspired and bio-enabled materials designs, experimentally validated multi scale modelling and simulation for materials design, and the use of the most advanced chemical and physical characterization techniques of structure, properties and behaviour.
Technologically relevant low-dimensional systems are a particular focus of Ceramics International. These include 0, 1 and 2-D nanomaterials (also covering CNTs, graphene and related materials, and diamond-like carbons), their nanocomposites, as well as nano-hybrids and hierarchical multifunctional nanostructures that might integrate molecular, biological and electronic components.
期刊介绍中文:
《Ceramics International》涵盖先进陶瓷材料科学。该杂志鼓励贡献展示对基本化学和物理现象的理解如何指导材料设计并激发新的或改进的加工技术的想法,以获得具有所需结构特征和性能的材料。期刊涵盖颗粒、致密或多孔体、薄膜/厚膜和层压体形式的氧化物和非氧化物陶瓷、功能玻璃、玻璃陶瓷、无定形无机非金属材料(及其与金属和有机材料的组合)、分级和复合结构。还涵盖了与工艺相关的主题,例如陶瓷-陶瓷接头或陶瓷与异种材料的连接,以及表面精加工和调节。 除了传统的加工技术之外,人们感兴趣的制造路线还包括受益于外部施加的应力、电磁场和高能束的创新程序,以及自上而下和自组装的纳米技术方法。此外,该杂志欢迎提交有关生物启发和生物支持的材料设计、经过实验验证的材料设计多尺度建模和模拟,以及使用最先进的结构、性质和行为的化学和物理表征技术。
编辑部地址:
ELSEVIER SCI LTD, THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD, ENGLAND, OXON, OX5 1GB