Nanocomposites
译名:纳米复合材料
3-5
2026
影响因子区间
—
平台估算
28%
2025
中国作者发文占比
2433 GBP
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期刊简介:Nanocomposites are multiphase or hybrid materials which when combined together, display markedly different properties from the bulk components. Nanocomposites differ from conventional composite materials due to the nanoscale dimensions of the filler phase and the exceptionally high surface to volume ratio of this phase. As a result they often possess unique mechanical, thermal, electrical, optical or catalytic properties which are controlled by factors such as local chemistry, mobility, morphology, or crystallinity. In addition, nanocomposites often offer a combination of several properties, making them even more attractive as multifunctional materials for the future, with potential applications in aerospace, healthcare, energy materials, sensors and other systems. The journal will deal with all aspects of polymeric and ceramic nanocomposites and nano-engineered composites, from nanoparticles, synthesis, morphology, structure, interfacial bonding, ageing, properties (e.g. mechanical, thermal, electrical, optical, wear, barrier, flame retardancy, antifouling, sensing and drug release) and characterization, processing to potential applications. Peer Review Policy All submitted manuscripts are subject to initial appraisal by the Editor. If found suitable for further consideration, papers are subject to peer review by independent, anonymous expect referees. All peer-review is single anonymized. Publishing Ethics The journal adheres to the highest standards of publishing ethics, with rigorous processes in place to ensure this is achieved. Taylor & Francis is a member of Committee of Publications Ethics (COPE) and utilises CrossCheck for all Journals. More information on our ethical standards and policies can be found here: http://authorservices.taylorandfrancis.com/ethics-for-authors/
【译文】纳米复合材料是多相或混合材料,当它们组合在一起时,表现出与本体成分明显不同的特性。纳米复合材料与传统复合材料的不同之处在于填料相的纳米级尺寸以及该相极高的表面积与体积比。因此,它们通常具有独特的机械、热、电、光学或催化性能,这些性能受局部化学、迁移率、形态或结晶度等因素控制。此外,纳米复合材料通常具有多种特性的组合,使其作为未来的多功能材料更具吸引力,在航空航天、医疗保健、能源材料、传感器和其他系统中具有潜在的应用前景。该杂志将讨论聚合物和陶瓷纳米复合材料和纳米工程复合材料的各个方面,从纳米颗粒、合成、形态、结构、界面粘合、老化、性能(例如机械、热、电、光学、磨损、阻隔、阻燃、防污、传感和药物释放)和表征、加工到潜在应用。同行评审政策 所有提交的手稿均需经过编辑的初步评估。如果发现适合进一步考虑,论文将接受独立、匿名的审稿人的同行评审。所有同行评审都是单一匿名的。出版道德 该期刊遵守出版道德的最高标准,并制定了严格的流程来确保这一目标的实现。 Taylor & Francis 是出版道德委员会 (COPE) 的成员,并对所有期刊使用 CrossCheck。有关我们道德标准和政策的更多信息,请访问:http://authorservices.taylorandfrancis.com/ethics-for-authors/

| 指标 | 当前值 | 近三年趋势 |
|---|---|---|
| JCR分区 | Q2 | 暂无 |
| 中科院分区 | 3区 | 暂无 |
| 影响因子区间 | 3-5 | 暂无 |