《纳米材料杂志》的总体目标是将科学和应用结合到纳米级和纳米结构材料上,重点是合成、加工、表征和应用含有真正纳米尺寸或纳米结构的材料,使其具有新颖/增强的特性或功能。它面向学术研究人员和实践工程师。《纳米材料杂志》将强调纳米材料科学、工程和纳米技术在应用开发和基础研究方面的持续增长和新挑战。所有论文都应强调纳米材料的实验、理论、计算和/或应用的原始结果,从硬(无机)材料到软(聚合物和生物)材料,再到混合材料或纳米复合材料。还欢迎对特定研究领域或指导论文的最新技术进行综述的论文,特别是那些强调纳米材料多学科观点和与重要纳米技术相关的论文。《纳米材料杂志》采用了无纸化、电子化的提交和评估系统,以促进同行评审过程的快速转变。主题领域包括(但不限于):纳米颗粒、纳米晶体、胶体、溶胶和量子点自组装和定向组装(分子和纳米粒子)膜、膜和涂层纳米管、纳米线、纳米纤维、纳米棒和纳米带纳米孔、介孔和微孔材料层次结构与分子-粒子网络表面与界面科学与工程无机-有机杂化物或纳米复合物纳米陶瓷、金属和合金纳米材料(原子、分子和体积)表征技术纳米材料工程和应用领域包括(但不限于):化学、石化和制药技术催化、气液分离和膜反应器能量转换和储存装置/系统,如燃料电池和太阳能电池电子学、光子学和磁学传感器医药、生物和药物开发环境、建筑、运输、电信和食品技术核、航天、军事和国防/安全技术
The overall aim of the Journal of Nanomaterials is to bring science and applications together on nanoscale and nanostructured materials with emphasis on synthesis, processing, characterization, and applications of materials containing true nanosize dimensions or nanostructures that enable novel/enhanced properties or functions. It is directed at both academic researchers and practicing engineers. Journal of Nanomaterials will highlight the continued growth and new challenges in nanomaterials science, engineering, and nanotechnology, both for application development and for basic research. All papers should emphasize original results relating to experimental, theoretical, computational, and/or applications of nanomaterials ranging from hard (inorganic) materials, through soft (polymeric and biological) materials, to hybrid materials or nanocomposites. Review papers summarizing the state of the art for a particular research field or tutorial papers, especially those emphasizing multidisciplinary views of nanomaterials and those related to significant nanotechnologies, are also welcome. Journal of Nanomaterials employs a paperless, electronic submission and evaluation system to promote a rapid turnaround in the peer review process.Subject areas include (but are by no means limited to):Nanoparticles, nanocrystals, colloids, sols, and quantum dotsSelf-assemblies and directed assemblies (of moledules and nanoparticles)Films, membranes, and coatingsNanotubes, nanowires, nanofibers, nanorods, and nanobeltsNanoporous, mesoporous, and microporous materialsHierarchical structures and molecular-particle networksSurface and interface sciences and engineeringInorganic-organic hybrids or nanocompositesNanoceramics, metals, and alloysNanomaterials (atomic, molecular, and bulk) characterization techniquesAreas of nanomaterials engineering and applications include (but are not limited to):Chemical, petrochemical, and pharmaceutical technologiesCatalysis, gas/liquid separations, and membrane reactorsEnergy conversion and storage devices/systems such as fuel cells and solar cellsElectronics, photonics, and magneticsSensorsMedicinal, biological, and drug developmentEnvironmental, building, transportation, telecommunications, and food technologiesNuclear, aerospace, military, and national defense/security technologies
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