Harvesting microwave energy using pyroelectricity of nanostructured graphene/zirconium-doped hafnium oxide ferroelectric heterostructures

被引:4
作者
Dragoman, Mircea [1 ]
Aldrigo, Martino [1 ]
Dinescu, Adrian [1 ]
Vasilache, Dan [1 ]
Iordanescu, Sergiu [1 ]
Dragoman, Daniela [2 ,3 ]
Laudadio, Emiliano [4 ]
Pavoni, Eleonora [4 ]
机构
[1] Natl Inst Res & Dev Microtechnol, Erou Iancu Nicolae St 126A, Voluntari 077190, Ilfov, Romania
[2] Univ Bucharest, Phys Fac, POB MG-11, Bucharest 077125, Romania
[3] Acad Romanian Scientists, Str Ilfov,3, Bucharest 050044, Romania
[4] Univ Politecn Marche, Dept Mat Environm Sci & Urban Planning, Via Brecce Bianche, I-60131 Ancona, Italy
基金
欧盟地平线“2020”;
关键词
energy harvesting; ferroelectrics; graphene; hafnium oxide; heterostructures; microwaves; pyroelectricity; GRAPHENE;
D O I
10.1088/1361-6528/acbcd9
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In this work, we present the design, atomistic/circuit/electromagnetic simulations, and the experimental results for graphene monolayer/zirconium-doped hafnium oxide (HfZrO) ultra-thin ferroelectric-based field effect transistors fabricated at the wafer scale, regarding the pyroelectricity generation directly from microwave signals, at room temperature and below it, namely at 218 K and at 100 K. The transistors work like energy harvesters, i.e. they collect low-power microwave energy and transform it into DC voltages with a maximum amplitude between 20 and 30 mV. The same devices function as microwave detectors in the band 1-10.4 GHz and at very low input power levels not exceeding 80 mu W when they are biased by using a drain voltage, with average responsivity values in the range 200-400 mV mW(-1).
引用
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页数:11
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共 30 条
[1]   Monolayer MoS2 self-switching diodes [J].
Al-Dirini, Feras ;
Hossain, Faruque M. ;
Mohammed, Mahmood A. ;
Hossain, Md Sharafat ;
Nirmalathas, Ampalavanapillai ;
Skafidas, Efstratios .
JOURNAL OF APPLIED PHYSICS, 2016, 119 (04)
[2]   All-Graphene Planar Self-Switching MISFEDs, Metal-Insulator-Semiconductor Field-Effect Diodes [J].
Al-Dirini, Feras ;
Hossain, Faruque M. ;
Nirmalathas, Ampalavanapillai ;
Skafidas, Efstratios .
SCIENTIFIC REPORTS, 2014, 4
[3]   Microwave Detection Using Two-Atom-Thick Self-Switching Diodes Based on Quantum Simulations and Advanced Circuit Models [J].
Aldrigo, M. ;
Dragoman, M. ;
Pelagalli, N. ;
Laudadio, E. ;
Zappelli, L. ;
Iordanescu, S. ;
Vasilache, D. ;
Dinescu, A. ;
Pierantoni, L. ;
Stipa, P. ;
Mencarelli, D. .
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2022, 70 (02) :1132-1145
[4]   Electromagnetic Energy Harvesting and Wireless Power Transmission: A Unified Approach [J].
Costanzo, Alessandra ;
Dionigi, Marco ;
Masotti, Diego ;
Mongiardo, Mauro ;
Monti, Giuseppina ;
Tarricone, Luciano ;
Sorrentino, Roberto .
PROCEEDINGS OF THE IEEE, 2014, 102 (11) :1692-1711
[5]   Ferroelectrics at the nanoscale: materials and devices - a critical review [J].
Dragoman, Mircea ;
Aldrigo, Martino ;
Dragoman, Daniela ;
Iordanescu, Sergiu ;
Dinescu, Adrian ;
Vulpe, Silviu ;
Modreanu, Mircea .
CRITICAL REVIEWS IN SOLID STATE AND MATERIALS SCIENCES, 2023, 48 (05) :561-579
[6]   HfO2-Based Ferroelectrics Applications in Nanoelectronics [J].
Dragoman, Mircea ;
Aldrigo, Martino ;
Dragoman, Daniela ;
Iordanescu, Sergiu ;
Dinescu, Adrian ;
Modreanu, Mircea .
PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS, 2021, 15 (05)
[7]   Solving the graphene electronics conundrum: High mobility and high on-off ratio in graphene nanopatterned transistors [J].
Dragoman, Mircea ;
Dinescu, Adrian ;
Dragoman, Daniela .
PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2018, 97 :296-301
[8]   Room temperature nanostructured graphene transistor with high on/off ratio [J].
Dragoman, Mircea ;
Dinescu, Adrian ;
Dragoman, Daniela .
NANOTECHNOLOGY, 2017, 28 (01)
[9]   Pyroelectric metamaterial millimeter-wave detector [J].
Fan, Kebin ;
Stenger, Vincent ;
Padilla, W. J. .
APPLIED PHYSICS LETTERS, 2022, 121 (02)
[10]   Effect of the Damping Function in Dispersion Corrected Density Functional Theory [J].
Grimme, Stefan ;
Ehrlich, Stephan ;
Goerigk, Lars .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 2011, 32 (07) :1456-1465