Monolithic superaligned carbon nanotube composite with integrated rewriting,actuating and sensing mu

来源 :纳米研究(英文版) | 被引量 : 0次 | 上传用户:dsq223
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Multifunctionality has become a mainstream trend in the development of smart clothing and flexible wearable devices.Nevertheless,it remains a grand challenge to realize multiple functions,such as sensing,actuating and information displaying,in one single multifunctional material.Here,we present one multifunctional integration strategy by employing monolithic superaligned carbon nanotube (SACNT) composite,which can leverage three different functions through fascinating features of SACNT.Firstly,by using thermochromic dye as a color-memorizing component and SACNT as a photothermal converter,the composite film can be utilized as a flexible rewritable medium.It demonstrates excellent rewriting performances (reversibility > 500 times).Secondly,the composite can be tailored to fabricate an actuator,when its length direction is along the SACNT alignment.The actuator shows a bending-morphing when illuminated by near-infrared light.The morphing is attributed to a large difference in volume change between the SACNT and polymer when the SACNT absorbs the optical energy and heats the composite.Thirdly,owing to the unique anisotropy of SACNT,the composite is easily to be stretched in the direction perpendicular to the SACNT alignment,accompanied by a change in electrical resistance.Therefore,the composite is able to be used as a strain sensor.Finally,we fabricate two smart wearable devices to demonstrate the applications,which realize the functions of human-motion detection (sensing) and rewritable information display (rewriting) simultaneously.This multifunctional SACNT composite is expected to have potential applications in the next-generation wearable devices,smart clothing and so on.
其他文献
Fabrication of large-area and uniform semiconducting thin films of two-dimensional (2D) materials is paramount for the full exploitation of their atomic thicknesses and smooth surfaces in integrated circuits.In addition to elaborate vapor-based synthesis
Heavy-metal-free silver based Ⅰ-Ⅲ-Ⅵ semiconductor nanocrystals (NCs),including ternary silver indium sulfide (AglnS2) and derivative quaternary silver indium zinc sulfide (i.e.,AgInZn2S4) NCs,possess advantages of low toxicity,and size-tunable band gaps a
Heterostructure has triggered a surge of interest due to its synergistic effects between two different layers,which contributes to desirable physical properties for extensive potential applications.Structurally stable borophene is becoming a promising can
Stimuli-responsive delivery systems hold promise in cancer treatments.However,their application potential has been limited due to undesirable drug leaking during blood circulation and inefficient therapeutic efficacy in tumors,resulting in undesirable the
In this paper,we use microwave reduction strategy to synthesize a new bi-functional sulfur host material at the service of cathode substrate for lithium-sulfur batteries (LSBs),the composite is made of hierarchical porous carbon foam supported carbon-enca
Ferroptosis is a newly form of regulated cell death,which has attracted great attention for tumor therapy.Herein,we prepared nanoscale coordination polymer Fe-NQA particles to deliver iron and NQA (vitamin K3 derivative) into tumor cells,which synergistic
The rational control of the active site of metal-organic frameworks (MOFs) derived nanomaterials is essential to build efficient bifunctional oxygen reduction/evolution reaction (ORR/OER) catalysts.Accordingly,through designing and constructing a Co3O4-Co
Cellulose nanofibers (CNF) are considered to be a potential substrate of energy material for energy storage devices due to the foldable,lightweight,recyclable and environmentally friendly feature.However,the energy materials tend to distribute unevenly or
Herein,we report the fabrication of Fe3O4@TiO2 nanosheet/Ag/g-C3N4 (Fe3O4@ns-TiO2/Ag/g-C3N4) composite photocatalysts with well-designed hierarchical yolk-shell structure.To endow the composites with fascinating features,multiple functional components are
In this study,we investigated the in vivo behaviors of chiral cobalt oxide nanoparticles (Co3O4 NPs) stabilized with D-or L-cysteine(denoted D-or L-NPs,respectively),as representative chiral metal oxide NPs.Chiral Co3O4 NPs exerted no observable cytotoxic