Matches in SemOpenAlex for { <https://semopenalex.org/work/W3105372353> ?p ?o ?g. }
- W3105372353 endingPage "105607" @default.
- W3105372353 startingPage "105607" @default.
- W3105372353 abstract "Deformation-derived electric polarization has been adopted as a core technology for electromechanics devices. Now, as the device experiences the multiple degrees of deformation, such as compressing, bending and stretching, upon the development of technology, the characterization techniques for devices need to be retrofitted to account for the different mechanistic origins of electric polarization. Here, we report the nanogenerators that enable a facile characterization of piezoelectricity and flexoelectricity in the device scale. The quadrant electrode NG along with nematically organized M13 bacteriophage provides the comprehensive piezoelectric coefficients while the flexoelectric coefficient was extracted from sandwich electrode NG. This approach offers a perspective on how to separate the piezoelectric and flexoelectric effects from the electric outputs. Such characterization will not only allow us an understanding of fundamental flexoelectric mechanisms but also help us to establish design rules for flexible electromechanical devices." @default.
- W3105372353 created "2020-11-23" @default.
- W3105372353 creator A5008062387 @default.
- W3105372353 creator A5014317101 @default.
- W3105372353 creator A5015241805 @default.
- W3105372353 creator A5015283188 @default.
- W3105372353 creator A5032385802 @default.
- W3105372353 creator A5033404227 @default.
- W3105372353 creator A5034718692 @default.
- W3105372353 creator A5048411184 @default.
- W3105372353 creator A5051371632 @default.
- W3105372353 creator A5053718492 @default.
- W3105372353 creator A5070314469 @default.
- W3105372353 creator A5073753541 @default.
- W3105372353 creator A5074945886 @default.
- W3105372353 creator A5076031665 @default.
- W3105372353 creator A5087380217 @default.
- W3105372353 date "2021-03-01" @default.
- W3105372353 modified "2023-09-30" @default.
- W3105372353 title "Nanogenerators facilitated piezoelectric and flexoelectric characterizations for bioinspired energy harvesting materials" @default.
- W3105372353 cites W1993378267 @default.
- W3105372353 cites W1994113262 @default.
- W3105372353 cites W2003159272 @default.
- W3105372353 cites W2010568938 @default.
- W3105372353 cites W2024516385 @default.
- W3105372353 cites W2028120697 @default.
- W3105372353 cites W2031007242 @default.
- W3105372353 cites W2033524260 @default.
- W3105372353 cites W2036397934 @default.
- W3105372353 cites W2037331307 @default.
- W3105372353 cites W2037576859 @default.
- W3105372353 cites W2057127437 @default.
- W3105372353 cites W2062799940 @default.
- W3105372353 cites W2071521202 @default.
- W3105372353 cites W2073503252 @default.
- W3105372353 cites W2076068917 @default.
- W3105372353 cites W2088536087 @default.
- W3105372353 cites W2090463772 @default.
- W3105372353 cites W2096227448 @default.
- W3105372353 cites W2107707357 @default.
- W3105372353 cites W2107890555 @default.
- W3105372353 cites W2117829411 @default.
- W3105372353 cites W2121809600 @default.
- W3105372353 cites W2123254265 @default.
- W3105372353 cites W2130045457 @default.
- W3105372353 cites W2132320707 @default.
- W3105372353 cites W2149953110 @default.
- W3105372353 cites W2151500925 @default.
- W3105372353 cites W2173029148 @default.
- W3105372353 cites W2220705763 @default.
- W3105372353 cites W2223998303 @default.
- W3105372353 cites W2322562895 @default.
- W3105372353 cites W2416231353 @default.
- W3105372353 cites W2418138209 @default.
- W3105372353 cites W2469286410 @default.
- W3105372353 cites W2520786735 @default.
- W3105372353 cites W2522949904 @default.
- W3105372353 cites W2549859012 @default.
- W3105372353 cites W2582581248 @default.
- W3105372353 cites W2594624148 @default.
- W3105372353 cites W2751550037 @default.
- W3105372353 cites W2790453615 @default.
- W3105372353 cites W2804673488 @default.
- W3105372353 cites W2901710133 @default.
- W3105372353 cites W2922291415 @default.
- W3105372353 cites W2937206629 @default.
- W3105372353 cites W2947628223 @default.
- W3105372353 cites W2991272439 @default.
- W3105372353 cites W2999151925 @default.
- W3105372353 cites W3036326603 @default.
- W3105372353 cites W3099624664 @default.
- W3105372353 cites W4212941127 @default.
- W3105372353 cites W4244048746 @default.
- W3105372353 doi "https://doi.org/10.1016/j.nanoen.2020.105607" @default.
- W3105372353 hasPublicationYear "2021" @default.
- W3105372353 type Work @default.
- W3105372353 sameAs 3105372353 @default.
- W3105372353 citedByCount "14" @default.
- W3105372353 countsByYear W31053723532021 @default.
- W3105372353 countsByYear W31053723532022 @default.
- W3105372353 countsByYear W31053723532023 @default.
- W3105372353 crossrefType "journal-article" @default.
- W3105372353 hasAuthorship W3105372353A5008062387 @default.
- W3105372353 hasAuthorship W3105372353A5014317101 @default.
- W3105372353 hasAuthorship W3105372353A5015241805 @default.
- W3105372353 hasAuthorship W3105372353A5015283188 @default.
- W3105372353 hasAuthorship W3105372353A5032385802 @default.
- W3105372353 hasAuthorship W3105372353A5033404227 @default.
- W3105372353 hasAuthorship W3105372353A5034718692 @default.
- W3105372353 hasAuthorship W3105372353A5048411184 @default.
- W3105372353 hasAuthorship W3105372353A5051371632 @default.
- W3105372353 hasAuthorship W3105372353A5053718492 @default.
- W3105372353 hasAuthorship W3105372353A5070314469 @default.
- W3105372353 hasAuthorship W3105372353A5073753541 @default.
- W3105372353 hasAuthorship W3105372353A5074945886 @default.
- W3105372353 hasAuthorship W3105372353A5076031665 @default.
- W3105372353 hasAuthorship W3105372353A5087380217 @default.
- W3105372353 hasConcept C100082104 @default.