國際簡稱:IET NANOBIOTECHNOL 參考譯名:等納米生物技術(shù)
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
《Iet Nanobiotechnology》自2007出版以來,是一本工程技術(shù)優(yōu)秀雜志。致力于發(fā)表原創(chuàng)科學(xué)研究結(jié)果,并為工程技術(shù)各個領(lǐng)域的原創(chuàng)研究提供一個展示平臺,以促進(jìn)工程技術(shù)領(lǐng)域的的進(jìn)步。該刊鼓勵先進(jìn)的、清晰的闡述,從廣泛的視角提供當(dāng)前感興趣的研究主題的新見解,或?qū)彶槎嗄陙砟硞€重要領(lǐng)域的所有重要發(fā)展。該期刊特色在于及時報道工程技術(shù)領(lǐng)域的最新進(jìn)展和新發(fā)現(xiàn)新突破等。該刊近一年未被列入預(yù)警期刊名單,目前已被權(quán)威數(shù)據(jù)庫SCIE收錄,得到了廣泛的認(rèn)可。
該期刊投稿重要關(guān)注點:
學(xué)科類別 | 分區(qū) | 排名 | 百分位 |
大類:Engineering 小類:Electrical and Electronic Engineering | Q2 | 202 / 797 |
74% |
大類:Engineering 小類:Electronic, Optical and Magnetic Materials | Q2 | 77 / 284 |
73% |
大類:Engineering 小類:Biotechnology | Q2 | 116 / 311 |
62% |
CiteScore 是由Elsevier(愛思唯爾)推出的另一種評價期刊影響力的文獻(xiàn)計量指標(biāo)。反映出一家期刊近期發(fā)表論文的年篇均引用次數(shù)。CiteScore以Scopus數(shù)據(jù)庫中收集的引文為基礎(chǔ),針對的是前四年發(fā)表的論文的引文。CiteScore的意義在于,它可以為學(xué)術(shù)界提供一種新的、更全面、更客觀地評價期刊影響力的方法,而不僅僅是通過影響因子(IF)這一單一指標(biāo)來評價。
大類學(xué)科 | 分區(qū) | 小類學(xué)科 | 分區(qū) |
工程技術(shù) | 4區(qū) | BIOCHEMICAL RESEARCH METHODS 生化研究方法 NANOSCIENCE & NANOTECHNOLOGY 納米科技 | 4區(qū) 4區(qū) |
中科院分區(qū)表 是以客觀數(shù)據(jù)為基礎(chǔ),運用科學(xué)計量學(xué)方法對國際、國內(nèi)學(xué)術(shù)期刊依據(jù)影響力進(jìn)行等級劃分的期刊評價標(biāo)準(zhǔn)。它為我國科研、教育機構(gòu)的管理人員、科研工作者提供了一份評價國際學(xué)術(shù)期刊影響力的參考數(shù)據(jù),得到了全國各地高校、科研機構(gòu)的廣泛認(rèn)可。
中科院分區(qū)表 將所有期刊按照一定指標(biāo)劃分為1區(qū)、2區(qū)、3區(qū)、4區(qū)四個層次,類似于“優(yōu)、良、及格”等。最開始,這個分區(qū)只是為了方便圖書管理及圖書情報領(lǐng)域的研究和期刊評估。之后中科院分區(qū)逐步發(fā)展成為了一種評價學(xué)術(shù)期刊質(zhì)量的重要工具。
按JIF指標(biāo)學(xué)科分區(qū) | 收錄子集 | 分區(qū) | 排名 | 百分位 |
學(xué)科:BIOCHEMICAL RESEARCH METHODS | SCIE | Q1 | 15 / 85 |
82.9% |
學(xué)科:NANOSCIENCE & NANOTECHNOLOGY | SCIE | Q3 | 71 / 140 |
49.6% |
按JCI指標(biāo)學(xué)科分區(qū) | 收錄子集 | 分區(qū) | 排名 | 百分位 |
學(xué)科:BIOCHEMICAL RESEARCH METHODS | SCIE | Q4 | 67 / 85 |
21.76% |
學(xué)科:NANOSCIENCE & NANOTECHNOLOGY | SCIE | Q3 | 87 / 140 |
38.21% |
JCR分區(qū)的優(yōu)勢在于它可以幫助讀者對學(xué)術(shù)文獻(xiàn)質(zhì)量進(jìn)行評估。不同學(xué)科的文章引用量可能存在較大的差異,此時單獨依靠影響因子(IF)評價期刊的質(zhì)量可能是存在一定問題的。因此,JCR將期刊按照學(xué)科門類和影響因子分為不同的分區(qū),這樣讀者可以根據(jù)自己的研究領(lǐng)域和需求選擇合適的期刊。
Author: Wen, Liu-Jing; Wang, Yue-Sheng; Zhang, Jie
Journal: IET NANOBIOTECHNOLOGY. 2023; Vol. 17, Issue 2, pp. 49-60. DOI: 10.1049/nbt2.12102
Author: Mo, Jingang; Jin, Jun; Yu, Han; Ai, Mingjun; Hu, Die; Li, Linlin; Song, Kai
Journal: IET NANOBIOTECHNOLOGY. 2023; Vol. 17, Issue 2, pp. 61-68. DOI: 10.1049/nbt2.12104
Author: Alahdal, Hadil M.; Abdullrezzaq, Sumya Ayad; Amin, Hawraz Ibrahim M.; Alanazi, Sitah F.; Jalil, Abduladheem Turki; Khatami, Mehrdad; Saleh, Marwan Mahmood
Journal: IET NANOBIOTECHNOLOGY. 2023; Vol. 17, Issue 1, pp. 22-31. DOI: 10.1049/nbt2.12107
Author: Yin, Li; Yuan, Liyong; Peng, Chunling; Wang, Qionghua
Journal: IET NANOBIOTECHNOLOGY. 2023; Vol. , Issue , pp. -. DOI: 10.1049/nbt2.12131
Author: Shao, Yankun; Xu, Yilin; Di, Huang; Shi, Xinxiu; Wang, Yingying; Liu, Hongyu; Song, Lina
Journal: IET NANOBIOTECHNOLOGY. 2023; Vol. , Issue , pp. -. DOI: 10.1049/nbt2.12113
Author: Qi, Ping; Ning, Zhaohui; Zhang, Xiuju
Journal: IET NANOBIOTECHNOLOGY. 2023; Vol. 17, Issue 2, pp. 41-48. DOI: 10.1049/nbt2.12103
Author: Lu, Junru; Sheng, Yuqi; Qian, Weiheng; Pan, Min; Zhao, Xiangwei; Ge, Qinyu
Journal: IET NANOBIOTECHNOLOGY. 2023; Vol. , Issue , pp. -. DOI: 10.1049/nbt2.12115
Author: Han, Xiu; Lu, Yan; Xu, Zhaoluo; Chu, Yanan; Ma, Xueping; Wu, Haiping; Zou, Bingjie; Zhou, Guohua
Journal: IET NANOBIOTECHNOLOGY. 2023; Vol. , Issue , pp. -. DOI: 10.1049/nbt2.12117
一般刊物只分省級、部級、核心,期刊本身是沒有幾類劃分的,具體是幾類或者幾級,您可以對照單位的分類文件確認(rèn)一下。Iet Nanobiotechnology雜志是由Wiley出版的一本SCIE,可用于職稱評定。
大多數(shù)核心期刊我們都是可以提供咨詢服務(wù)的。目前核心期刊主要分為以下幾類:1.國內(nèi)核心:按照權(quán)威度排序,社科類:南大核心>南大擴展>北大核心>科技核心 按照權(quán)威度排序。工科類:CSCD C庫>CSCD E庫(相當(dāng)于CSCD擴展)>北大核心>科技核心。2.國外核心(全英文):按照權(quán)威度排序為:SSCI=SCI>EI>ISTP=CPCI。
為了確保您的職稱評定順利進(jìn)行,我們建議提前半年到一年開始準(zhǔn)備,這樣能夠保證有充足的時間來處理所有相關(guān)事宜。如果客戶需要加急服務(wù),我們會與雜志社進(jìn)行溝通,以確定是否可以提供加急服務(wù)。請注意,如果確認(rèn)可以加急,可能會收取一定的加急費用。
期刊編輯會綜合考慮多個因素,如發(fā)表范圍、學(xué)術(shù)價值和原創(chuàng)性等,對稿件進(jìn)行綜合評估。盡管任何機構(gòu)均無法保證每篇稿件都會被發(fā)表,但我們可以用專業(yè)知識和豐富經(jīng)驗,協(xié)助您理解并遵循期刊的發(fā)表要求,從而提高您的稿件被發(fā)表的機率。
期刊發(fā)表的費用因期刊不同而異。根據(jù)您的需求,我們會為您推薦性價比最高的期刊,并提供專業(yè)的期刊供您選擇。一般來說,只要符合職稱要求,大多數(shù)作者都會選擇性價比最高的期刊作為意向期刊進(jìn)行重點咨詢。我們會為您提供詳細(xì)的期刊信息和費用說明,以確保您能夠做出明智的選擇。
一般來說,我們推薦的期刊和您的專業(yè)方向、文章情況都是匹配的,極少出現(xiàn)稿件被拒的情況。如果稿件被拒,期刊編輯會提供詳細(xì)的拒稿信和建議,以幫助您了解拒稿原因并改進(jìn)您的稿件。關(guān)于退款政策,具體情況可能因期刊不同而異,請您咨詢我們的工作人員以獲取詳細(xì)信息。
中科院 4區(qū) JCR Q3
大類:工程技術(shù)
中科院 2區(qū) JCR Q1
大類:工程技術(shù)
中科院 4區(qū) JCR Q4
大類:工程技術(shù)
中科院 4區(qū) JCR Q3
大類:工程技術(shù)
中科院 4區(qū) JCR Q4
大類:工程技術(shù)
中科院 4區(qū) JCR Q2
大類:工程技術(shù)
中科院 4區(qū) JCR Q2
中科院 2區(qū) JCR Q1
中科院 1區(qū) JCR Q1
中科院 2區(qū) JCR Q1
中科院 1區(qū) JCR Q1
中科院 2區(qū) JCR Q1
中科院 1區(qū) JCR Q1
中科院 2區(qū) JCR Q2