A triboelectric generator based on self-poled Nylon-11 nanowires fabricated by gas-flow assisted template wetting

被引:101
作者
Choi, Yeon Sik [1 ]
Jing, Qingshen [1 ]
Datta, Anuja [1 ]
Boughey, Chess [1 ]
Kar-Narayan, Sohini [1 ]
机构
[1] Univ Cambridge, Dept Mat Sci & Met, 27 Charles Babbage Rd, Cambridge CB3 0FS, England
基金
欧盟地平线“2020”; 英国工程与自然科学研究理事会; 欧洲研究理事会;
关键词
SURFACE FUNCTIONALIZATION; NANOGENERATOR; PIEZOELECTRICITY; FERROELECTRICITY; NANOSTRUCTURES; POLARIZATION; BEHAVIOR; FIELD;
D O I
10.1039/c7ee01292f
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Triboelectric generators have emerged as potential candidates for mechanical energy harvesting, relying on motion-generated surface charge transfer between materials with different electron affinities. In this regard, synthetic organic materials with strong electron-donating tendencies are far less common than their electron-accepting counterparts. Nylons are notable exceptions, with odd-numbered Nylons such as Nylon-11, exhibiting electric polarisation that could further enhance the surface charge density crucial to triboelectric generator performance. However, the fabrication of Nylon-11 in the required polarised delta'-phase typically requires extremely rapid crystallisation, such as melt-quenching, as well as "poling'' via mechanical stretching and/or large electric fields for dipolar alignment. Here, we propose an alternative one-step, near room-temperature fabrication method, namely gas-flow assisted nano-template (GANT) infiltration, by which highly crystalline "self-poled'' delta'-phase Nylon-11 nanowires are grown from solution within nanoporous anodised aluminium oxide (AAO) templates. Our gas-flow assisted method allows for controlled crystallisation of the delta'-phase of Nylon-11 through rapid solvent evaporation and an artificially generated extreme temperature gradient within the nanopores of the AAO template, as accurately predicted by finite-element simulations. Furthermore, preferential crystal orientation originating from template-induced nano-confinement effects leads to self-poled delta'-phase Nylon-11 nanowires with higher surface charge distribution than melt-quenched Nylon-11 films, as observed by Kelvin probe force microscopy (KPFM). Correspondingly, a triboelectric nanogenerator (TENG) device based on as-grown templated Nylon-11 nanowires fabricated via GANT infiltration showed a ten-fold increase in output power density as compared to an aluminium-based triboelectric generator, when subjected to identical mechanical excitations.
引用
收藏
页码:2180 / 2189
页数:10
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