Recherche - Archive ouverte HAL Accéder directement au contenu

Filtrer vos résultats

105 résultats

Innovative SOI based MEMS using large deformation ultra-thin membranes: From micropumps to piezo-NEMS

L. Montès , R. Lefevre , A. Salette , Rabaud D. , Dargent L. , et al.
2nd Ukrainian-French Seminar "Semiconductor-on-Insulator materials, devices and circuits: physics, technology and diagnostics", Apr 2013, Kyiv, Ukraine
Communication dans un congrès hal-01182194v1

Electromechanical measurement of piezoelectric nanogenerators based on ZnO nanowires

Ran Tao , Ronan Hinchet , Santhosh Kannan , D. Marques , Mitesh Parmar , et al.
3rd International Conference on Nanogenerators and Piezotronics (NGPT 2016), Jun 2016, Rome, Italy
Communication dans un congrès hal-02068496v1

Mechanical energy harvesters and sensors based on semiconductor piezoelectric nanowires (invited)

Gustavo Ardila , Ran Tao , Ronan Hinchet , Laurent Montès , Mireille Mouis
2nd European Network for the Development of Organic Electric Converters (ENDOR 2015), Sep 2015, Chemnitz, Germany
Communication dans un congrès hal-02071129v1

Unit-cell design of a force sensing device based on vertical piezoelectric nanowires

Edgar Leon Perez , Mireille Mouis , Sven Salomon , Gustavo Ardila , Emmanuelle Pauliac-Vaujour
2nd International Conference on Nanogenerators and Piezotronics (NGPT), Georgia Institute of Technology, Jun 2014, Atlanta, United States
Communication dans un congrès hal-02067130v1

Rectenna Optimization Guidelines for Ambient Electromagnetic Energy Harvesting

Erika Vandelle , Simon Hemour , Tan-Phu Vuong , Gustavo Ardila , Wu Ke
Wireless Power Transmission for Sustainable Electronics, 1, Wiley, 2020, ⟨10.1002/9781119578598.ch12⟩
Chapitre d'ouvrage hal-02891030v1
Image document

Environment-Aware Adaptive Energy Harvesters for IoT Applications Environment-Aware Adaptive Energy Harvesters for IoT Applications

Xiaoqiang Gu , Erika Vandelle , G. Ardila , T. Vuong , Ke Wu , et al.
IEEE MTT-S International Wireless Symposium, May 2019, Guangzhou, China
Communication dans un congrès hal-02527550v1

Mechanical energy harvesting using piezoelectric materials

Gustavo Ardila
NEREID Domain Worshop: Task " Energy for Autonomous Systems", G. Ardila, A. Mathewson and D. Holden, Sinano Summer School, Oct 2016, Bertinoro, Italy
Communication dans un congrès hal-02078219v1

Folded Patch Antenna on Paper for RF Energy Harvesting and Sensing Applications

E. Vandelle , D. Bui , G. Ardila , S. Hemour , K. Wu , et al.
2018 International Conference on Advanced Technologies for Communications (ATC), Oct 2018, Ho Chi Minh City, Vietnam. pp.69-71, ⟨10.1109/ATC.2018.8587423⟩
Communication dans un congrès hal-02068187v1

NEMS/MEMS generators, thermoelectric devices and pumps

Laurent Montès , Ran Tao , Ronan Hinchet , Xin Xu , Alexis Potié , et al.
International Conference "Micro- and Nanoelectronics 2014" (ICMNE-2014), Oct 2014, Zvenigorod, Russia
Communication dans un congrès hal-02071228v1

ZnO Nanowires as core of piezoelectric energy harvesters

Hinchet R. , Lee S. , Ardila G. , Montès L. , Mouis M. , et al.
FUNCTIONAL OXIDES FOR INTEGRATION IN MICRO AND NANO-ELECTRONICS, Apr 2013, Autrans, France. 2013
Poster de conférence hal-01078453v1

Simulation Study of the Influence of Free Carriers and Surface Traps on the Operation of Semi-Conducting Piezoelectric Devices (invited)

Gustavo Ardila , Ran Tao , Mireille Mouis
4th International Conference on Nanogenerators and Piezotronics (NGPT 2018), May 2018, Seoul, South Korea
Communication dans un congrès hal-02070507v1

A SIDO buck converter with ultra low power MPPT scheme PowerMEMS

Adrien Ramond , Gustavo Aldolfo Ardila Rodriguez , Hugo Durou , Bruno Jammes , Carole Rossi
9th International Workshop on Micro and Nanotechnology for Power Generation and Energy Conversion Applications, Dec 2009, Washington, DC, United States
Communication dans un congrès hal-00604201v1
Image document

Conception, simulation et réalisation d'un micro actionneur à base de matériau énergétique pour l'actionnement microfluidique

Gustavo Aldolfo Ardila Rodriguez
Micro et nanotechnologies/Microélectronique. Université Paul Sabatier - Toulouse III, 2008. Français. ⟨NNT : ⟩
Thèse tel-00258425v1

Modelling of vertical-nanowire based devices for mechanical/electrical transduction

Mireille Mouis , Ran Tao , Mitesh Parmar , Gustavo Ardila , Laurent Montès
Materials Challenges in Alternative & Renewable Energy (MCARE 2016), The American Ceramic Society (ACerS), Apr 2016, Clearwater, United States
Communication dans un congrès hal-02070500v1

PiezoNEMS: How to enhance piezoelectricity and piezoresistance in semiconductor nanowire for sensors and energy devices

L. Montes , R. Lefevre , A. Salette , D. Rabaud , L. Dargent , et al.
Indo-US International Workshop on NanoSensor Science & Technology, IWNST 2013, Feb 2013, Berhampur, India
Communication dans un congrès hal-01182184v1
Image document

Modular and Reconfigurable Rectenna Unitcells with Beam-Forming Properties

E. Vandelle , Tan-Phu Vuong , Gustavo Ardila , Simon Hemour , Ke Wu
2019 49th European Microwave Conference (EuMC), Oct 2019, Paris, France. pp.109-112, ⟨10.23919/EuMC.2019.8910889⟩
Communication dans un congrès hal-02527666v1

Flexible piezoelectric transducers based on a PMMA/ZnO nanowire composite

R. Tao , G. Ardila , M. Parmar , L. Michaud , M. Mouis
2017 Joint International EUROSOI Workshop and International Conference on Ultimate Integration on Silicon (EUROSOI-ULIS), Apr 2017, Athens, Greece. pp.188-191, ⟨10.1109/ULIS.2017.7962558⟩
Communication dans un congrès hal-02016601v1

Towards Self-Powered Systems: Using Nanostructures to Harvest Ambient Energy

Gustavo Ardila , Anne Kaminski-Cachopo , Marco Pala , Alessandro Cresti , Laurent Montes , et al.
A. Nazarov; F. Balestra; V. Kilchytska; D. Flandre. Functional Nanomaterials and Devices for Electronics, Sensors and Energy Harvesting, Springer International Publishing, pp.223-240, 2014, 978-3-319-08803-7. ⟨10.1007/978-3-319-08804-4_11⟩
Chapitre d'ouvrage hal-01966696v1

Nanowires in the Beyond CMOS and More than Moore perspectives : Electromechanical properties

M. Mouis , L. Montés , X. Xu , J.W. Lee , F. Rochette , et al.
SINANO-NANOSIL Workshop: "On the convergence between More Moore, More Than Moore and Beyond CMOS, Sep 2010, Seville, Spain
Communication dans un congrès hal-00604929v1

Piezoelectric nanostructures for the mechanical energy harvesting

Ardila G. , Hinchet R. , Montes L. , Mouis M.
Nanomeeting 2013, May 2013, Minsk, Russia. pp.463-468
Communication dans un congrès hal-01182199v1

A de-embedding technique for metallic nanowires in microwave characterization

C.-L. Hsu , G. Ardila , P. Benech
Microelectronic Engineering, 2013, 112, pp.241-248. ⟨10.1016/j.mee.2013.04.012⟩
Article dans une revue istex hal-01020864v1

Scaling prospects in mechanical energy harvesting with piezo nanowires

G. Ardila , R. Hinchet , M. Mouis , L. Montes
European Physical Journal: Applied Physics, 2013, 63 (1), pp.14407. ⟨10.1051/epjap/2013120483⟩
Article dans une revue istex hal-01020854v1

Harvesting Ambient RF Energy Efficiently With Optimal Angular Coverage

E. Vandelle , D. Bui , T.P. Vuong , G. Ardila , K. Wu , et al.
IEEE Transactions on Antennas and Propagation, 2019, 67 (3), pp.1862 - 1873. ⟨10.1109/TAP.2018.2888957⟩
Article dans une revue hal-02056987v1

MEMS-AL: Microsistemas para America Latina

Gustavo Ardila , M. Billères , S. Bonnetier , J. Arcamone , Robert Baptist
ed. by COLIFRI. Science, Technologie et Societé - Défis de la Recherche en Colombie - Une perpective depuis la coopération franco-colombienne, , inPress, Chapitre de Sciences et Technologies
Chapitre d'ouvrage hal-02070557v1

Nano-générateurs piézoélectriques pour les capteurs autonomes

Gustavo Ardila , Ran Tao , Julien Kéraudy , Galvao Laura , Filali Mariem , et al.
2014
Autre publication scientifique hal-02071162v1

Development and characterization of flexible/non-flexible energy transducers based on ZnO nanowires

Mitesh Parmar , Ran Tao , L. Michaud , Paulo Oliveira , Laurent Montès , et al.
Journées Nationales des Nanofils Semiconducteurs, J2N, Nov 2017, Grenoble, France
Communication dans un congrès hal-02070963v1

Performance Optimization of Vertical Nanowire-Based Piezoelectric Nanogenerators

R. Hinchet , S. Lee , G. Ardila , L. Montès , M. Mouis , et al.
Journal of Energy and Power Engineering, 2013, 7, pp.1816-1820
Article dans une revue hal-01002254v1

Modeling of semiconducting piezoelectric nanowires for mechanical energy harvesting and mechanical sensing

R. Tao , G. Ardila , L. Montes , M. Mouis
Nano Energy, 2015, 14, pp.62-76. ⟨10.1016/j.nanoen.2014.11.035⟩
Article dans une revue hal-01986541v1

Simulation and automated characterisation of optimal load for flexible composite generators based on piezoelectric ZnO nanowires

D. Menin , M. Parmar , R. Tao , P. Oliveira , M. Mouis , et al.
2018 Joint International EUROSOI Workshop and International Conference on Ultimate Integration on Silicon (EUROSOI-ULIS), Mar 2018, Granada, Spain. pp.173-176, ⟨10.1109/ULIS.2018.8354762⟩
Communication dans un congrès hal-02016623v1
Image document

Glass integrated optic waveguides combining optical grade dicing and ion-exchanged planar waveguide

Alain Morand , Yashpreet Kaur , Martine Gri , Gustavo Ardila , Pierre Benech
SPIE OPTO, Feb 2019, San Francisco, United States. pp.17, ⟨10.1117/12.2507530⟩
Communication dans un congrès hal-02066613v1