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A Directional Strain Sensor Based on Anisotropic Microhoneycomb Cellulose Nanofiber‐Carbon Nanotube Hybrid Aerogels Prepared by Unidirectional Freeze Drying

材料科学 各向异性 复合材料 碳纳米管 纳米纤维 纤维素 碳纳米纤维 纳米管 化学工程 纳米纤维素 纳米技术 量子力学 物理 工程类
作者
Cong Wang,Zheng‐Ze Pan,Wei Lv,Bilu Liu,Jie Wei,Xiaohui Lv,Yi Luo,Hirotomo Nishihara,Quan‐Hong Yang
出处
期刊:Small [Wiley]
卷期号:15 (14): e1805363-e1805363 被引量:114
标识
DOI:10.1002/smll.201805363
摘要

Aerogels are one of the most popular composite reinforcement materials because of their high porosity and their continuous and homogeneous network. Most aerogels are isotropic, thus leading to isotropic composites when they are used as fillers. This fundamentally limits their applications in areas where anisotropy is needed. Here, an anisotropic microhoneycomb cellulose nanofiber- (CellF)-carbon nanotube (CNT) aerogel (denoted MCCA) is reported that contains unidirectionally aligned penetrating microchannels, which is prepared by a unidirectional freeze-drying method, using the structure-directing function of the CellFs. Due to its anisotropic nature, MCCA-reinforced polydimethylsilexane (denoted MCCA/PDMS) shows distinct anisotropic behavior, with the electrical conductivity and Young's modulus along the direction of penetrating microchannels being approximately twice those in the orthogonal direction. MCCA/PDMS is used to make "directional" strain sensors with electrical resistance as the output signal. They demonstrate a 92% sensitivity difference between the microchannel direction and its orthogonal direction. This approach can be used to prepare anisotropic MCCA-based composites with other polymers for different applications.
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