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11篇 您的检索式:作者名="Martin Pumera"
    题名 作者 年代 出处 被引量
1Food analysis on microfluidic devices using ultrasensitive carbon nanotubes dectectors显示文摘Gonzalez Crevillen A Monica Avila Martin Pumera 0,,19:1
2Graphene/carbon nanotube composites not exhibiting synergic effect for supercapacitors: the resulting capacitance being average of capacitance of individual components 显示文摘lucia Buglione Martin Pumera 2012Electrochemistry Communications2012,17,:1
3Graphenes Prepared by Hummers, Staudenmaier and Hofmann Methods for Analysis of TNT‐Based Nitroaromatic Explosives in Seawater显示文摘Beng Khong Ong Hwee Ling Poh Chun Kiang Chua Martin Pumera 2012Electroanalysis2012,,11:1
4Electrochemical nanobiosensors 显示文摘Martin Pumera Samuel Sanchez Izumi Ichinose 2007Sensors and Actuators B2007,123,2:1
5Chem 显示文摘 Joseph Wang Frantis ek Opekar Anal 200274:1968-19712002,74,:1
6Telemedicine platform for health assessment remotely by an integrated nanoarchitectonics FePS_(3)/rGO and Ti_(3)C_(2)-based wearable device显示文摘Due to the emergence of various new infectious(viral/bacteria)diseases,the remote surveillance of infected persons has become most important,especially if hospitals need to isolate infected patients to prevent the spreading of pathogens to health care personnel.Therefore,we develop a remote health monitoring system by integrating a stretchable asymmetric supercapacitor(SASC)as a portable power source with sensors that can monitor the human physical health condition in real-time and remotely.An abnormal body temperature and breathing rate could indicate a person’s sickness/infection status.Here we integrated FePS3@graphene-based strain sensor and SASC into an all-in-one textile system and wrapped it around the abdomen to continuously monitor the breathing cycle of the person.The real body temperature was recorded by integrating the temperature sensor with the SASC.The proposed system recorded physiological parameters in real-time and when monitored remotely could be employed as a screening tool for monitoring pathogen infection status.Jayraj V.Vaghasiya Carmen C.Mayorga-Martinez Martin Pumera 2022npj Flexible Electronics2022,6,1:1
7Contactless conductivity detector for microchip capillary electrophoresis 显示文摘Martin Pumera Joseph Wang Frantisek Opekar 2002Anal Chem2002,74,:1
8Electrochemical properties of double wall carbon nanotube electrodes 显示文摘Martin Pumera 2007Nanoscale Research Letters2007,2,2:1
9Graphene-based nanomaterials for energy storage显示文摘Martin Pumera 2011Energy Environ Sci2011,4,:1
10New materials for electrochemical sensing Ⅵ:Carbon nanotubes显示文摘ARBEN Merkoc MARTIN Pumera XAVIER Llopis 2005Trends2005,24,9:1
11Carbon Nanotube-epoxy Composites for Electrochemical Sensing显示文摘Martin Pumera Arben Merkoci S A 2006Sensors and Actuators B: Chemical2006,113,2:1
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