IET Nanobiotechnology
IET Nanobiotechnology
期刊ISSN: 1751-8741
E-ISSN: 1751-875X
影响因子: 登录后查看数据
自引率: 2%
SCI期刊JCR分区
SCI期刊JCR分区等级:1区
按学科分区
BIOCHEMICAL RESEARCH METHODS
Q1
NANOSCIENCE & NANOTECHNOLOGY
Q2
BIOCHEMICAL RESEARCH METHODS
Q3
NANOSCIENCE & NANOTECHNOLOGY
Q2
《新锐期刊分区表》(2026年3月发布)
大类学科
工程技术
3区
小类学科
生化研究方法
3区
纳米科技
3区
Top期刊
综述期刊
最新中科院SCI期刊分区(2025年3月升级版)
大类学科
工程技术
4区
小类学科
生化研究方法
4区
纳米科技
4区
Top期刊
综述期刊
期刊简介
Electrical and electronic engineers have a long and illustrious history of contributing new theories and technologies to the biomedical sciences. This includes the cable theory for understanding the transmission of electrical signals in nerve axons and muscle fibres; dielectric techniques that advanced the understanding of cell membrane structures and membrane ion channels; electron and atomic force microscopy for investigating cells at the molecular level. Other engineering disciplines, along with contributions from the biological, chemical, materials and physical sciences, continue to provide groundbreaking contributions to this subject at the molecular and submolecular level. Our subject now extends from single molecule measurements using scanning probe techniques, through to interactions between cells and microstructures, micro- and nano-fluidics, and aspects of lab-on-chip technologies. The primary aim of IET Nanobiotechnology is to provide a vital resource for academic and industrial researchers operating in this exciting cross-disciplinary activity. We can only achieve this by publishing cutting edge research papers and expert review articles from the international engineering and scientific community. To attract such contributions we will exercise a commitment to our authors by ensuring that their manuscripts receive rapid constructive peer opinions and feedback across interdisciplinary boundaries. IET Nanobiotechnology covers all aspects of research and emerging technologies including, but not limited to: Fundamental theories and concepts applied to biomedical-related devices and methods at the micro- and nano-scale (including methods that employ electrokinetic, electrohydrodynamic, and optical trapping techniques) Micromachining and microfabrication tools and techniques applied to the top-down approach to nanobiotechnology Nanomachining and nanofabrication tools and techniques directed towards biomedical and biotechnological applications (e.g. applications of atomic force microscopy, scanning probe microscopy and related tools) Colloid chemistry applied to nanobiotechnology (e.g. cosmetics, suntan lotions, bio-active nanoparticles) Biosynthesis (also known as green synthesis) of nanoparticles; to be considered for publication, research papers in this area must be directed principally towards biomedical research and especially if they encompass in vivo models or proofs of concept. We welcome papers that are application-orientated or offer new concepts of substantial biomedical importance Techniques for probing cell physiology, cell adhesion sites and cell-cell communication Molecular self-assembly, including concepts of supramolecular chemistry, molecular recognition, and DNA nanotechnology Societal issues such as health and the environment Special issues. Call for papers: Smart Nanobiosensors for Next-generation Biomedical Applications - https://digital-library.theiet.org/files/IET_NBT_CFP_SNNBA.pdf Selected extended papers from the International conference of the 19th Asian BioCeramic Symposium - https://digital-library.theiet.org/files/IET_NBT_CFP_ABS.pdf
出版信息
出版商
Wiley
涉及的研究方向
工程技术-纳米科技
刊期
Bi-monthly
年文章数
14
出版国家或地区
ENGLAND
是否OA
Cite Score(2025年最新版)
Cite Score SJR SNIP 排名
9.8 0.904 1.035
学科
大类学科:Engineering
小类学科:Electrical and Electronic Engineering
分区
Q1
学科
大类学科:Engineering
小类学科:Electronic, Optical and Magnetic Materials
分区
Q1
学科
大类学科:Engineering
小类学科:Biotechnology
分区
Q1
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