Nanogap Sensors Decorated with SnO2 Nanoparticles Enable Low-Temperature Detection of Volatile Organic Compounds
暂无分享,去创建一个
Antonio Vincenzo Radogna | S. Capone | L. Francioso | P. Siciliano | Chiara Baldacchini | A. Taurino | A. Bizzarri | P. Creti | M. Epifani | C. Pascali | A. V. Radogna
[1] Myungkeun Oh,et al. Selective Manipulation of Biomolecules with Insulator-Based Dielectrophoretic Tweezers. , 2020, ACS applied nano materials.
[2] H. Garmestani,et al. A highly sensitivity and selectivity Pt-SnO2 nanoparticles for sensing applications at extremely low level hydrogen gas detection , 2019, Journal of Alloys and Compounds.
[3] Xian-fa Zhang,et al. Co3O4 Hollow Nanosphere-Decorated Graphene Sheets for H2S Sensing near Room Temperature , 2019, ACS Applied Nano Materials.
[4] H. Garmestani,et al. Tin dioxide nanoparticles with high sensitivity and selectivity for gas sensors at sub-ppm level of hydrogen gas detection , 2019, Journal of Materials Science: Materials in Electronics.
[5] J. McGrath,et al. Entropic Trapping of DNA with a Nanofiltered Nanopore. , 2019, ACS applied nano materials.
[6] J. Nampoothiri,et al. Wearable, Flexible Ethanol Gas Sensor Based on TiO2 Nanoparticles-Grafted 2D-Titanium Carbide Nanosheets , 2019, ACS Applied Nano Materials.
[7] J. Voldman,et al. Multi-frequency dielectrophoretic characterization of single cells , 2018, Microsystems & nanoengineering.
[8] M. Tomellini,et al. Single-Crystal Pt-Decorated WO3 Ultrathin Films: A Platform for Sub-ppm Hydrogen Sensing at Room Temperature , 2018, ACS applied nano materials.
[9] Santiago Marco,et al. Low Power Operation of Temperature-Modulated Metal Oxide Semiconductor Gas Sensors , 2018, Sensors.
[10] Davoud Dastan. Effect of preparation methods on the properties of titania nanoparticles: solvothermal versus sol–gel , 2017, Applied Physics A.
[11] L. Francioso,et al. Preparation and characterization of UV-cured composite films containing ZnO nanostructures: Effect of filler geometric features on piezoelectric response , 2017 .
[12] Vijay K. Tomer,et al. Near-Room-Temperature Ethanol Detection Using Ag-Loaded Mesoporous Carbon Nitrides , 2017, ACS omega.
[13] Maxim Shkunov,et al. Rapid determination of nanowire electrical properties using a dielectrophoresis-well based system. , 2017, Applied physics letters.
[14] Tobias Baur,et al. Highly Sensitive and Selective VOC Sensor Systems Based on Semiconductor Gas Sensors: How to? , 2017 .
[15] W. Maziarz,et al. Nanostructured TiO2-based gas sensors with enhanced sensitivity to reducing gases , 2016, Beilstein journal of nanotechnology.
[16] Hyundong Lee,et al. NO gas sensing kinetics at room temperature under UV light irradiation of In2O3 nanostructures , 2016, Scientific Reports.
[17] Santiago Marco,et al. Calibration transfer in temperature modulated gas sensor arrays , 2016 .
[18] Tielin Shi,et al. High Surface Area MoS2/Graphene Hybrid Aerogel for Ultrasensitive NO2 Detection , 2016 .
[19] J. Zhao,et al. Dielectrophoretic Assembly of Gold Nanoparticles in Nanoscale Junctions for Rapid, Miniature Chemiresistor Vapor Sensors , 2016 .
[20] Raimund Leitner,et al. Quantitative Ethylene Measurements with MOx Chemiresistive Sensors at Different Relative Air Humidities , 2015, Sensors.
[21] Mina Hoorfar,et al. Purification of a droplet using negative dielectrophoresis traps in digital microfluidics , 2015 .
[22] Marian Mikula,et al. Fast highly-sensitive room-temperature semiconductor gas sensor based on the nanoscale Pt-TiO2-Pt sandwich , 2015 .
[23] Giovanni Neri,et al. First Fifty Years of Chemoresistive Gas Sensors , 2015 .
[24] Jing Bai,et al. Titanium dioxide nanomaterials for sensor applications. , 2014, Chemical reviews.
[25] Han‐Ik Joh,et al. Dielectrophoresis of graphene oxide nanostructures for hydrogen gas sensor at room temperature , 2014 .
[26] Il-Doo Kim,et al. Selectivity enhancement of SnO2 nanofiber gas sensors by functionalization with Pt nanocatalysts and manipulation of the operation temperature , 2013 .
[27] Libao An,et al. Dielectrophoretic assembly of carbon nanotubes and stability analysis , 2013 .
[28] D. Briand,et al. Micromachined semiconductor gas sensors , 2020, Semiconductor Gas Sensors.
[29] U. Weimar,et al. Conduction mechanism in semiconducting metal oxide sensing films: impact on transduction , 2013 .
[30] S. Capone,et al. Effect of top-down nanomachining on electrical conduction properties of TiO2 nanostructure-based chemical sensors , 2012, Nanotechnology.
[31] Zhen Jin,et al. Metal Oxide Nanostructures and Their Gas Sensing Properties: A Review , 2012, Sensors.
[32] Thomas Braschler,et al. A miniaturized continuous dielectrophoretic cell sorter and its applications. , 2010, Biomicrofluidics.
[33] Vinayak P. Dravid,et al. UV-activated room-temperature gas sensing mechanism of polycrystalline ZnO , 2009 .
[34] Eduard Llobet,et al. Optimized Feature Extraction for Temperature-Modulated Gas Sensors , 2009, J. Sensors.
[35] W. Maziarz,et al. Gas sensors in a dynamic operation mode , 2008 .
[36] T. Andreu,et al. Synthesis of Soluble and Size‐Controlled SnO2 and CeO2 Nanocrystals: Application of a General Concept for the Low‐Temperature, Hydrolytic Synthesis of Organically Capped Oxide Nanoparticles , 2008 .
[37] Luca Francioso,et al. SnO2 thin films from metalorganic precursors: Synthesis, characterization, microelectronic processing and gas-sensing properties , 2007 .
[38] J. Gómez‐Herrero,et al. WSXM: a software for scanning probe microscopy and a tool for nanotechnology. , 2007, The Review of scientific instruments.
[39] S. Konishi,et al. Nano-gap Effects in Semiconductor Gas Sensors , 2006 .
[40] Luca Francioso,et al. A WO3-based gas sensor array with linear temperature gradient for wine quality monitoring , 2006 .
[41] Wolfgang Fritzsche,et al. Pearl chain formation of nanoparticles in microelectrode gaps by dielectrophoresis. , 2004, Langmuir : the ACS journal of surfaces and colloids.