2022
DOI: 10.1016/j.compositesa.2022.106883
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Multifunctional AgNW@MXene decorated polymeric textile for highly-efficient electro-/photothermal conversion and triboelectric nanogenerator

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Cited by 28 publications
(14 citation statements)
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“…MXenes are included in the tribo‐negative group because of the oxygen and numerous F groups are present in it. [ 37 ] Moreover, Liu et al [ 51 ] developed polymeric multiple energy ‐driven textile‐based TENGs made of PET textile with AgNW. The process used here is the dip‐coating method, which is a simple solution impregnation process involving alternating coatings AgNW and MXene with a solvent.…”
Section: Carbon Nanomaterials‐based Tengmentioning
confidence: 99%
“…MXenes are included in the tribo‐negative group because of the oxygen and numerous F groups are present in it. [ 37 ] Moreover, Liu et al [ 51 ] developed polymeric multiple energy ‐driven textile‐based TENGs made of PET textile with AgNW. The process used here is the dip‐coating method, which is a simple solution impregnation process involving alternating coatings AgNW and MXene with a solvent.…”
Section: Carbon Nanomaterials‐based Tengmentioning
confidence: 99%
“…For example, Bobinger et al formed the highly transparent AgNW layer on the glass substrate, as shown in Figure 7 a, which resulted in a uniform and efficient heating performance ( Figure 7 b) [ 51 ]. Several different technologies can be used to create transparent heaters using AgNW electrodes [ 48 , 49 , 52 ]. Transparent resistive heater technology involves the use of AgNWs as transparent electrodes in the resistive heating element [ 48 , 49 ].…”
Section: Applications Of Agnwsmentioning
confidence: 99%
“… (O) Temperature increasing of MXene@ AgNW. 204 Reproduced with permission from (Liu et al., 2022), Copyright 2022 Elsevier. …”
Section: Thermal Energy Conversion and Storagementioning
confidence: 99%
“…In addition, Liu et al. 204 synthesized the composite 3D MXene@ sliver nanowires (AgNW) material based on the dip coating technique as illustrated in Figure 12 M. The electrical heating measure results from Figure 12 N demonstrate that the saturation temperature of the MXene@ AgNW could reach 45°C when the voltage is 1V whereas the saturation temperature could reach 215°C when the voltage is 3.5 V during a 30-s operating period. Furthermore, it can be found from Figure 12 O that the saturation temperature of the MXene@ AgNW could be enhanced sharply by 224 °C within the 10s.…”
Section: Thermal Energy Conversion and Storagementioning
confidence: 99%