Publicaciones en las cuales se emplean algunos de los productos comercializados por MicruX, incluyendo dispositivos microfluídicos, sensores electroquímicos e instrumentación analítica portátil. En estas publicaciones se recogen diferentes aplicaciones y metodologías que pueden ser interesantes para saber más sobre las posibilidades ofrecidas por los productos de MicruX.
En el caso de que tenga alguna publicación y/o comunicación en la que utilice alguno de los productos de MicruX y que no se encuentre en esta lista, puede contactar con nosotros en el mail marketing@micruxfluidic.com, para incorporar su publicación al listado.
Lisa Mayerhuber, Stephan Trattner, Sebastian Luger, Gabriele Weigelhofer, Christian Hametner, Philipp Fruhmann. “Development of ion-selective electrodes for antipyrine and its derivatives as potential tool for environmental water monitoring”. Journal of Electroanalytical Chemistry, 2021, 886, 115110.
Ziyue Li, Xiong Ding, Kun Yin, Zhiheng Xu, Kumarasen Cooper, Changchun Liu, “Electric field-enhanced electrochemical CRISPR biosensor for DNA detection”. Biosensors and Bioelectronics, 2021, 192, 113498.
Elena Boselli, Zhizhen Wu, Alexa Friedman, Birgit Claus Henn, and Ian Papautsky. Validation of Electrochemical Sensor for Determination of Manganese in Drinking Water. Environ. Sci. Technol. 2021, 55, 11, 7501–7509
Rodrigues T, Mishyn V, Bozdogan A, Leroux, Y.R., Happy H, Kasry A, Boukherroub R, Dostalek J, Aspermair P, Bintinger J, Kleber C, Szunerits S and Knoll W. “On the Detection of cTnI - A Comparison of Surface-Plasmon Optical -, Electrochemical -, and Electronic Sensing Concepts”. Ann Clin Med Case Rep, 2021, 6(2), 1-16.
Jan Klouda, Lenka Benesova, Pavel Kocovský, Karolina Schwarzova-Peckova. "Voltammetry of 7-dehydrocholesterol as a new and useful tool for Smith-Lemli-Opitz syndrome diagnosis". Talanta, 2021, 122260.
Tiina M. Sikanen, Iiro Kiiski and Elisa Ollikainen. "Chapter 3. Microfluidic Analysis Techniques for Safety Assessment of Pharmaceutical Nano- and Microsystems". Characterization of Pharmaceutical Nano- and Microsystems, 2021.
Lorenzo Travaglini, Adam P. Micolich, Claudio Cazorla, Erica Zeglio, Antonio Lauto, and Damia Mawad. "Single-Material OECT-Based Flexible Complementary Circuits Featuring Polyaniline in Both Conducting Channels". Adv. Funct. Mater. 2021, 31, 2007205.
Xihu Wu, Qian Liu, Abhijith Surendran, Steven E. Bottle, Prashant Sonar, and Wei Lin Leong. "Enhancing the Electrochemical Doping Efficiency in Diketopyrrolopyrrole-Based Polymer for Organic Electrochemical Transistors". Adv. Electron. Mater. 2021, 7, 2000701.
Mikhail Vagin, Viktor Gueskine, Evangelia Mitraka, Suhao Wang, Amritpal Singh, Igor Zozoulenko, Magnus Berggren, Simone Fabiano, and Xavier Crispin. "Negatively-Doped Conducting Polymers for Oxygen Reduction Reaction". Adv. Energy Mater, 2021, 11, 2002664.
Irene de Cesare, Criseida G. Zamora-Chimal, Lorena Postiglione, Mahmoud Khazim, Elisa Pedone, Barbara Shannon, Gianfranco Fiore, Giansimone Perrino, Sara Napolitano, Diego di Bernardo, Nigel J. Savery, Claire Grierson, Mario di Bernardo, and Lucia Marucci. "ChipSeg: An Automatic Tool to Segment Bacterial and Mammalian Cells Cultured in Microfluidic Devices". ACS Omega, 2021, 6, 2473−2476.
Christian Strietzel, Kouki Oka, Maria Strømme, Rikard Emanuelsson, and Martin Sjödin. "An Alternative to Carbon Additives: The Fabrication of Conductive Layers Enabled by Soluble Conducting Polymer Precursors − A CaseStudy for Organic Batteries". ACS Appl. Mater. Interfaces, 2021, 13, 5349−5356.
Maxwell T. Robinson, Julie Tung, Meysam Heydari Gharahcheshmeh, Karen K. Gleason. Humidity‐Initiated Gas Sensors for Volatile Organic Compounds Sensing. Adv. Funct. Materials. 2021