2022
DOI: 10.1039/d1nr07863a
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Electromechanical conversion efficiency of GaN NWs: critical influence of the NW stiffness, the Schottky nano-contact and the surface charge effects

Abstract: The GaN piezoelectric nanowires (NWs) are considered as promising nanomaterials to develop high-efficient piezoelectric generators.

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Cited by 6 publications
(14 citation statements)
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“…In contrast, no clear trend was observed as the seed layer deposition temperature was modified. Our results confirm the trend found in recent works[27,29] where a smaller NW radius led to a larger piezoresponse. However, since PFM characterizes the converse piezoelectric effect instead of the direct piezoelectric effect, there was no intentional force applied on the NWs in this mode.…”
supporting
confidence: 93%
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“…In contrast, no clear trend was observed as the seed layer deposition temperature was modified. Our results confirm the trend found in recent works[27,29] where a smaller NW radius led to a larger piezoresponse. However, since PFM characterizes the converse piezoelectric effect instead of the direct piezoelectric effect, there was no intentional force applied on the NWs in this mode.…”
supporting
confidence: 93%
“…However, since PFM characterizes the converse piezoelectric effect instead of the direct piezoelectric effect, there was no intentional force applied on the NWs in this mode. Therefore there was no need for a PMMA matrix to mechanically consolidate the NWs which were not prompt to parasitic flexion by contrast with previous work [29].…”
Section: Resultsmentioning
confidence: 77%
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“…Experimentally, beyond literature surveys which can only provide indirect and qualitative clues due to the large number of interfering parameters, the influence of geometry on NW piezoresponse has only started to be examined quantitatively. In a recent paper [24], vertical GaN NWs with light P-doping, sub-100 nm diameters and about 1 µm length have been grown by PA-MBE and their piezoelectric properties tested at nanoscale by measuring simultaneously the open circuit voltage V OC and the deformation under controlled vertical force. Results corresponding to purely axial compression have been obtained with the 'rigid NWs' population.…”
Section: Introductionmentioning
confidence: 99%
“…However, this can impose a limitation to reduce the NW diameter if the radial etching step also leads to some axial etching. Long NWs with high aspect ratios are required for flexible electronics or energy conversion devices, for instance. Diameter and aspect ratio are also important in NW photonic devices: To exploit the advantages of the NW geometry, the diameter of the objects must be shorter than the wavelength of the interacting photons, , and the NW diameter is critical to obtain linear devices. , …”
Section: Introductionmentioning
confidence: 99%