Utilize este identificador para referenciar este registo: http://hdl.handle.net/10362/117017
Título: Piezoelectricity Enhancement of Nanogenerators Based on PDMS and ZnSnO3 Nanowires through Microstructuration
Autor: Rovisco, Ana
Dos Santos, Andreia
Cramer, Tobias
Martins, Jorge
Branquinho, Rita
Águas, Hugo
Fraboni, Beatrice
Fortunato, Elvira
Martins, Rodrigo
Igreja, Rui
Barquinha, Pedro
Palavras-chave: micro-structuration
nanogenerator
nanowires
PDMS
piezoelectricity
ZnSnO3
Materials Science(all)
Data: 22-Abr-2020
Citação: Rovisco, A., Dos Santos, A., Cramer, T., Martins, J., Branquinho, R., Águas, H., Fraboni, B., Fortunato, E., Martins, R., Igreja, R., & Barquinha, P. (2020). Piezoelectricity Enhancement of Nanogenerators Based on PDMS and ZnSnO3 Nanowires through Microstructuration. ACS Applied Materials & Interfaces, 12(16), 18421-18430. https://doi.org/10.1021/acsami.9b21636
Resumo: The current trend for smart, self-sustainable, and multifunctional technology demands for the development of energy harvesters based on widely available and environmentally friendly materials. In this context, ZnSnO3 nanostructures show promising potential because of their high polarization, which can be explored in piezoelectric devices. Nevertheless, a pure phase of ZnSnO3 is hard to achieve because of its metastability, and obtaining it in the form of nanowires is even more challenging. Although some groups have already reported the mixing of ZnSnO3 nanostructures with polydimethylsiloxane (PDMS) to produce a nanogenerator, the resultant polymeric film is usually flat and does not take advantage of an enhanced piezoelectric contribution achieved through its microstructuration. Herein, a microstructured composite of nanowires synthesized by a seed-layer free hydrothermal route mixed with PDMS (ZnSnO3@PDMS) is proposed to produce nanogenerators. PFM measurements show a clear enhancement of d33 for single ZnSnO3 versus ZnO nanowires (23 ± 4 pm/V vs 9 ± 2 pm/V). The microstructuration introduced herein results in an enhancement of the piezoelectric effect of the ZnSnO3 nanowires, enabling nanogenerators with an output voltage, current, and instantaneous power density of 120 V, 13 μA, and 230 μW·cm-2, respectively. Even using an active area smaller than 1 cm2, the performance of this nanogenerator enables lighting up multiple LEDs and other small electronic devices, thus proving great potential for wearables and portable electronics.
Descrição: SFRH/BD/131836/2017 SFRH/BD/122286/2016 PD/BD/105876/2014
Peer review: yes
URI: http://hdl.handle.net/10362/117017
DOI: https://doi.org/10.1021/acsami.9b21636
ISSN: 1944-8244
Aparece nas colecções:FCT: DCM - Artigos em revista internacional com arbitragem científica

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