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您现在的位置: 医学全在线 > 医学论文 > SCI期刊 > 正文:Materials science & engineering. C, Materials for biological applications if:2.404
    

Materials science & engineering. C, Materials for biological applications


Materials science & engineering. C, Materials for biological applications
影响因子: 2.404
I S S N: 0928-4931
出 版 社: Elsevier
出 版 地: Amsterdam
出版国家: Netherlands
刊  期: 半月刊
创刊时间: 2008
语  种: 英文
审稿周期: 较快,2-4周
中科院分区: 3
投稿命中率: 容易
国外数据库收录: IM
中国收录文章数:
5年影响因子: 2.596
研究领域: 生物材料
官方链接: http://www.sciencedirect.com/science/journal/09284...
投稿须知: http://www.sciencedirect.com/science/journal/09284...

期刊介绍:

Materials Science and Engineering C: Biomimetic and Supramolecular Systems is an international and interdisciplinary journal which reports on scientific and technical contributions dealing with all aspects of conceiving, designing, constructing and testing materials, structures, devices and systems which are based on supramolecular aggregates and on larger-scale assemblies which replicate biological structures and processes. These include, but are not limited to: Biological or biomimetic approaches to the design, assembly and functionalization of new intelligent materials, natural materials (i.e. cells, collagen, actin and myosin), devices and systems. Chemical aspects of molecularly designed, tailor-made novel functionalized materials. Physical principles underlying the various interaction schemes leading to self-assembled or artificially-engineered molecular aggregates, architectures and machines. Molecular engineering aspects including novel fabrication and processing routines. Sensors and Information Processes including artificial sensing and perception processes and biosensors. New characterization techniques for investigating the interrelation - at the molecular level - between the structure, the order and the dynamical features of these materials and systems with their physical properties and functions Actuators and Control Systems such as artificial muscles, organic micromechanical devices (MEMS) and support structures. Computer simulations for a better understanding and prediction of the physical and chemical properties of biomimetic and supramolecular systems.
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