Bionanoscience

期刊全称Bionanoscience
涉及主题化学生物物理材料科学生物化学医学遗传学工程类有机化学量子力学纳米技术化学工程内科学纳米颗粒地质学复合材料古生物学光学核磁共振
期刊介绍

BioNanoScience is a new field of research that has emerged at the interface of nanoscience and biology, aimed at integration of nano-materials into engineered systems, for new applications in biology and medicine. The aim of BioNanoScience is to provide a forum for the rapidly growing area of bionanoscience, emphasizing the link between structure, properties and processes of nanoscale phenomena in biological and bioinspired structures and materials for a variety of engineered systems. The journal promotes fundamental research in bionanoscience and engineering to advance nanoscience, nanotechnology and engineering, toward application in biology and medicine. This new journal will provide a forum for this interdisciplinary community by publishing highest quality peer-reviewed publications. Methods covered in this journal include experimental (including but not limited to imaging, via SEM/AFM/optical microscopy and tweezers; x-ray scattering and diffraction tools, electrical/magnetic characterizations; design, and synthesis via self-assembly, layer-by-layer, Langmuir films; biotechnology, via recombinant DNA methods, and protein engineering, etc.), theoretical (e.g. statistical mechanics, nanomechanics, quantum mechanics, etc.) and computational (bottom-up multi-scale simulation, first principles methods, supercomputing, etc.) research. Areas of applications of interest include all relevant physical, chemical, and biological phenomena and their engineering into integrated systems: mechanical (e.g. deformation, adhesion, failure), electrical and electronic (e.g. electromechanical stimulation, capacitors, energy storage, batteries), optical (e.g. absorption, luminescence, photochemistry), thermal (e.g. thermomutability, thermal management), biological (e.g. how cells interact with nanomaterials, molecular flaws and defects, biosensing, biological mechanisms s.a. mechanosensing), nanoscience of disease (e.g. genetic disease, cancer, organ/tissue fa ilure), as well as information science (e.g. DNA computing). The journal covers fundamental structural and mechanistic analyses of biological processes at nanoscale and their translation into synthetic applications. Studies of interfaces (e.g. between dissimilar structures, organic-inorganic) are of particular interest. In the area of interface between dissimilar structures, papers are also welcome on hybrid systems, including CMOS integrated circuits embedding organic nanostructures as well as biological components.

期刊ISSNprint: 2191-1630
历年影响因子
2024年 2023年 2022年 2021年 2020年 2019年 2018年 2017年
33000000
历年发表/被引量
年份20252024202320222021202020192018201720162015201420132012
发表量3014792241321061021149510419928415138
被引量150732443232264924811460100272852437829421011975
h-Index0
自引率6.70%
涉及的研究领域MATERIALS SCIENCE, BIOMATERIALS-
中科院2025年分区 ?
大类小类TOP期刊综述期刊
4区4区 材料科学:生物材料
WOS期刊分区

JCR学科分类

JCR分区学科名称收录数据库JCR分区分区排名
MATERIALS SCIENCE, BIOMATERIALSESCIQ336/55

JCI学科分类

JCI分区学科名称收录数据库JCI分区分区排名
MATERIALS SCIENCE, BIOMATERIALSESCIQ338/55
期刊主页https://www.springer.com/12668https://link.springer.com/journal/12668
投稿网址https://www.editorialmanager.com/bnsc/
出版商Springer Nature
出版国家(地区)United States
出版周期4 issues per year
每年出版文章数104
Gold OA文章占比2.63%
原创研究文献占比
(排除综述)
94.66%
SCI收录类型

Emerging Sources Citation Index (ESCI)

Scopus (CiteScore)

PubMed链接http://www.ncbi.nlm.nih.gov/nlmcatalog?term=2191-1630%5BISSN%5D
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