Publicaciones (95) Publicaciones en las que ha participado algún/a investigador/a

2023

  1. A 2-D-Material FET Verilog-A Model for Analog Neuromorphic Circuit Design

    IEEE Transactions on Electron Devices, Vol. 70, Núm. 9, pp. 4945-4952

  2. A Novel Analysis of Periodic Structures Based on Loaded Transmission Lines

    IEEE JOURNAL OF MICROWAVES, Vol. 3, Núm. 3, pp. 1019-1027

  3. Assessment of map based variable rate strategies for copper reduction in hedge vineyards

    Computers and Electronics in Agriculture, Vol. 207

  4. Characterization of the Intrinsic and Extrinsic Resistances of a Microwave Graphene FET Under Zero Transconductance Conditions

    IEEE Transactions on Electron Devices, Vol. 70, Núm. 11, pp. 5977-5982

  5. Compact Modeling of Two-Dimensional Field-Effect Biosensors

    Sensors, Vol. 23, Núm. 4

  6. Comparison of printing techniques for the fabrication of flexible carbon nanotube-based ammonia chemiresistive gas sensors

    Flexible and Printed Electronics, Vol. 8, Núm. 3

  7. Demonstration of bare Laser-reduced Graphene Oxide sensors for Ammonia and Ethanol

    IEEE Sensors Journal

  8. Electrically tunable lateral spin-valve transistor based on bilayer CrI3

    npj 2D Materials and Applications, Vol. 7, Núm. 1

  9. Evaluation of an electrostatic spray charge system implemented in three conventional orchard sprayers used on a commercial apple trees plantation

    Crop Protection, Vol. 167

  10. Exploiting Ambipolarity in Graphene Field-Effect Transistors for Novel Designs on High-Frequency Analog Electronics

    Small, Vol. 19, Núm. 49

  11. Fully Integrated Flexible RF Detectors in MoS2and Graphene based MMIC

    Device Research Conference - Conference Digest, DRC

  12. Graphene field-effect transistor TCAD tool for circuit design under freeware

    Proceedings - 2023 19th International Conference on Synthesis, Modeling, Analysis and Simulation Methods, and Applications to Circuit Design, SMACD 2023

  13. Graphene-on-Silicon Hybrid Field-Effect Transistors

    Advanced Electronic Materials

  14. Investigation of the Optical Properties of Indium Tin Oxide Thin Films by Double Integration Sphere Combined with the Numerical IAD Method

    Materials, Vol. 16, Núm. 4