Brendan Hanrahan
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Citado por
A comparison of single-wall carbon nanotube electrochemical capacitor electrode fabrication methods
MH Ervin, BS Miller, B Hanrahan, B Mailly, T Palacios
Electrochimica acta 65, 37-43, 2012
Effects of growth orientations and epitaxial strains on phase stability of thin films
S Liu, BM Hanrahan
Physical Review Materials 3 (5), 054404, 2019
New approach to waste-heat energy harvesting: pyroelectric energy conversion
S Pandya, G Velarde, L Zhang, JD Wilbur, A Smith, B Hanrahan, ...
NPG Asia Materials 11 (1), 1-5, 2019
Accounting for the various contributions to pyroelectricity in lead zirconate titanate thin films
B Hanrahan, Y Espinal, C Neville, R Rudy, M Rivas, A Smith, MT Kesim, ...
Journal of Applied Physics 123 (12), 124104, 2018
Solid-state thermal energy storage using reversible martensitic transformations
DJ Sharar, BF Donovan, RJ Warzoha, AA Wilson, AC Leff, BM Hanrahan
Applied Physics Letters 114 (14), 143902, 2019
Thermotherapy platform based on a highly stretchable wireless heater
N Lazarus, B Hanrahan
Advanced Materials Technologies 1 (8), 1600130, 2016
Optical initiation of nanoporous energetic silicon for safing and arming technologies
WA Churaman, CR Becker, GD Metcalfe, BM Hanrahan, LJ Currano, ...
Optical Technologies for Arming, Safing, Fuzing, and Firing VI 7795, 779506, 2010
Improved pyroelectric performance for thin film lead zirconate titanate (PZT) capacitors with IrO2 electrodes
B Hanrahan, L Sanchez, CM Waits, RG Polcawich
Smart Materials and Structures 25 (1), 015025, 2015
Multiplexed electrospray scaling for liquid fuel injection
CM Waits, B Hanrahan, I Lee
Journal of Micromechanics and Microengineering 20 (10), 104010, 2010
Origin of Pyroelectricity in Ferroelectric HfO2
J Liu, S Liu, LH Liu, B Hanrahan, ST Pantelides
Physical Review Applied 12 (3), 034032, 2019
Pyroelectric Energy Conversion in Doped Hafnium Oxide (HfO2) Thin Films on Area‐Enhanced Substrates
B Hanrahan, C Mart, T Kämpfe, M Czernohorsky, W Weinreich, A Smith
Energy Technology, 2019
Thermodynamic cycle optimization for pyroelectric energy conversion in the thin film regime
BM Hanrahan, F Sze, AN Smith, NR Jankowski
International Journal of Energy Research 41 (13), 1880-1890, 2017
Wireless power transmission via modulated laser irradiation of pyroelectric thin films
B Hanrahan, C Neville, A Smith, N Ter‐Gabrielyan, N Jankowski, ...
Advanced Materials Technologies 1 (9), 1600178, 2016
Wear mechanisms in microfabricated ball bearing systems
B Hanrahan, S Misra, CM Waits, R Ghodssi
Wear 326, 1-9, 2015
An integrated permanent-magnet microturbogenerator supported on microball bearings
MI Beyaz, BM Hanrahan, J Feldman, R Ghodssi
Journal of microelectromechanical systems 22 (3), 794-803, 2013
An adhesion-dominated rolling friction regime unique to micro-scale ball bearings
BM Hanrahan, S Misra, MI Beyaz, JH Feldman, CM Waits, R Ghodssi
Tribology Letters 56 (2), 215-221, 2014
Microball bearing technology for MEMS devices and integrated microsystems
R Ghodssi, B Hanrahan, M Beyaz
2011 16th International Solid-State Sensors, Actuators and Microsystems …, 2011
Management and storage of energy converted via a pyroelectric heat engine
Z Zhang, B Hanrahan, C Shi, A Khaligh
Applied Energy 230, 1326-1331, 2018
First demonstration of a bending-mode elastocaloric cooling ‘loop’
DJ Sharar, J Radice, R Warzoha, B Hanrahan, B Chang
2018 17th IEEE Intersociety Conference on Thermal and Thermomechanical …, 2018
Combining inverse and conventional pyroelectricity in antiferroelectric thin films for energy conversion
B Hanrahan, Y Espinal, S Liu, Z Zhang, A Khaligh, A Smith, SP Alpay
Journal of Materials Chemistry C 6 (36), 9828-9834, 2018
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Artigos 1–20