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Microchimica Acta
基本信息
期刊名称 Microchimica Acta
MICROCHIM ACTA
期刊ISSN 0026-3672
期刊官方网站 https://www.springer.com/604
是否OA No
出版商 Springer-Verlag Wien
出版周期 Monthly
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始发年份 1937
年文章数 461
最新影响因子 5.3(2023)  scijournal影响因子  greensci影响因子
中科院SCI期刊分区
大类学科 小类学科 Top 综述
化学2区 CHEMISTRY, ANALYTICAL 分析化学2区
CiteScore
CiteScore排名 CiteScore SJR SNIP
学科 排名 百分位 9.8 0.848 0.778
Chemistry
Analytical Chemistry
18/156 88%
补充信息
自引率 3.8%
H-index 74
SCI收录状况 Science Citation Index Expanded
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PubMed Central (PMC) http://www.ncbi.nlm.nih.gov/nlmcatalog?term=0026-3672%5BISSN%5D
投稿指南
期刊投稿网址 https://www.editorialmanager.com/miac/
收稿范围
Microchimica Acta (MCA) publishes articles on truly novel methods of modern chemical, biochemical and biological analysis based on the use of advanced (non-routine) micro/nano-materials. This includes all kinds of micro- and nano-shaped particles, upconversion particles, quantum dots, micro/nano-wires, molecular frameworks, meso- and nanoporous materials, nano-sized/structured imprints, thin films, hybrid materials, related nanosized matter. Coverage extends to novel analytical methods and devices that provide expedient solutions to the most contemporary demands in (bio)chemical sensing, such as point-of-care and on-site applications, wearable (bio)sensors, in-vivo-monitoring, tissue-embedded sensor-based diagnostics, or alarm systems, (bio)sensing applications using micro/nanomotors, sensing materials based on synthetic biology, and biomedical imaging and targeting. Coverage also includes methods for modification and (bio)functionalization of respective surfaces, and the characterization of the materials used. It is essential, though, that (bio)analytical applicability is being demonstrated.

Besides Original Papers and Short Communications, Microchimica Acta publishes invited Review Articles that provide a critical assessment of research progress in the scientific fields covered by the journal. The journal welcomes proposals for Topical Collections on any emerging topic of paramount interest in the field of analytical sciences based on micro and nanomaterials.

Key points considered in the evaluation of the submitted works are summarized in the following comments:
1. When the target analyte is undoubtedly present in the sample (for example, glucose in the blood, creatinine in urea, etc.) the data should demonstrate that the method enables the determination of the target analyte in unspiked samples. A method that is not able to determine a naturally occurring compound in a specific sample is of limited impact.
2. When spiking is necessary a) to demonstrate the applicability of the method (for example, a cancer biomarker in a biological sample) or b) to study the recovery of the method, spiking should be conducted at the beginning of the whole analytical process. The target analyte should be added to the undiluted samples while the choice of the spiked concentrations of the analyte should be justified by providing correct references using a source of information (e.g., results of clinical studies) or normative documentation (e.g., from World Health Organization).
3. The interference study should include those compounds frequently present in the examined sample. Indeed, the interference effect of the examined compounds should be evaluated at a concentration level that reflects the concentration ratio (interference compound/target analyte) in the analyzed sample.
4. Synthetic protocols of new materials should be concisely described but without unnecessary details. Experimental procedures (quantities, reaction times, work-up, purification steps, etc.) should be specified so other people can reproduce the proposed synthetic work.
5. The assay procedure should be described in detail. A protocol on how to perform the assay with a sample (amount of the sample, how the sample is treated, addition of reagents, dilution ratio, how analytical data are generated etc.) is necessary for any method to be used by others.
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Review article
投稿指南 https://link.springer.com/journal/604/submission-guidelines
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编辑信息

Editor-in-Chief


Alberto Escarpa

Department of Analytical Chemistry

Chemical Research Institute “Andrés M. del Río”

University of Alcalá

28871 Alcalá de Henares

Madrid, Spain

Email: alberto.escarpa@uah.es


Mamas (Mamantos) I. Prodromidis

University of Ioannina

Department of Chemistry

Laboratory of Analytical Chemistry

Ioannina 45 110, GREECE

Email: mprodrom@uoi.gr


Managing Editors

J. Oleksy-Frenzel, Berlin

W. Frenzel, Berlin

Email: mca.frenzel@t-online.de


Senior Associate Editors


J. C. Claussen, Ames, USA

Email: jcclauss@iastate.edu


G. Evtugyn, Kazan, Russian Federation

Email: gevtugyn@gmail.com


D. L. Giokas, Ioannina, Greece

Email: dgiokas@uoi.gr


T. Hirsch, Regensburg, Germany

Email: Thomas.Hirsch@ur.de


J. Kosman, Poznan, Poland

Email: kosman@amu.edu.pl


T. Nann, Callaghan, Australia

Email: thomas.nann@newcastle.edu.au


P. Skládal, Brno, Czech Republic

Email: skladal@chemi.muni.cz


L. Ye, Lund, Sweden

Email: lei.ye@tbiokem.lth.se


Y. Zhang, Singapore

Email: biezy@nus.edu.sg


Associate Editors


D. Christodouleas

Email: Dionysios_Christodouleas@uml.edu


S. de Marcos

Email: smarcos@unizar.es


A.V. Markin

Email: av_markin@mail.ru


A. Martín-Galán

Email: aida12martin@gmail.com


S. Nevolová

Email: Bidmanova.S@seznam.cz


A. Perro

Email: adeline.perro@enscbp.fr


C.D. Stalikas

Email: cstalika@uoi.gr


F. Tsopelas

Email: ftsop@central.ntua.gr


M. Vaculovičová

Email:Marketa.Ryvolova@seznam.cz


D. Vilela-Garcia

Email: dianavg86@gmail.com


D. Zigah

Email: dodzi.zigah@u-bordeaux.fr


Advisory Editorial Board


D. Belder, Institut für Analytische Chemie, Universität Leipzig, Leipzig, Germany


L. F. Capitan-Vallvey, Department of Analytical Chemistry, University of Granada, Granada, Spain


Xi Chen, Department of Chemistry, Xiamen University, Xiamen, China


Boris B. Dzantiev, A.N.Bach Institute of Biochemistry, Research Center of Biotechnology Russian Academy of Sciences, Moscow, Russia


J. Galbán, Department of Analytical Chemistry, University of Zaragoza, Zaragoza, Spain


Qingli Hao, School of Chemical Engineering, Nanjing University of Science andTechnology,

Nanjing, China


N. Hildebrandt, Laboratoire de Chimie Organique, Bioorganique, Réactivité et Analyse (COBRA), Université de Rouen Normandie, Mont-Saint-Aignan, France


A. Kuhn, Le Centre National de la Recherche Scientifique, Institute of Molecular Sciences, Talence, France


O. Lev, Division of Environmental Science, Hebrew University of Jerusalem, Jerusalem, Israel


Gongke Li, School of Chemistry, Sun Yat-sen University, Guangzhou, China


Guodong Liu, North Dakota State University, Analytical Chemistry - Bioassay, Fargo, USA


Yitao Long, Key Laboratory for Advanced Materials & Department of Chemistry,

East China University of Science and Technology, Shanghai, China


Xiliang Luo, Qingdao University of Science and Technology, College of Chemistry and Molecular Engineering, Qingdao, China


A. Merkoci, Institute Catalá de Nanotecnologia, Universitat Autònoma de Barcelona,

Barcelona, Spain


V. M. Mirsky, Faculty of Natural Sciences - Nanobiotechnology,

Brandenburg University of Technology, Senftenberg, Germany


C. O'Sullivan, Universitat Rovira i Virgili, Chemical Engineering, Tarragona, Spain


Jianfeng Ping, Zhejiang University, School of Biosystems Engineering and Food Science, Zhejiang, China


M. Shamsipur, Department of Chemistry, Razi University, Kermanshah, Iran


T. Soukka, Department of Biotechnology, University of Turku, Turku, Finland


N. S. Swami, Department of Electrical and Computational Engineering, University of Virginia, Charlottesville, USA


Dian-Ping Tang, Institute of Analytical Chemistry, Department of Chemistry, Fuzhou University, Fuzhou, China


Yadollah Yamini, Department of Chemistry, Faculty of Sciences, Tarbiat Modares University, Tehran Iran

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