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基于氯化胆碱深共晶溶剂的纤维素纳米晶水凝胶作为可穿戴应变传感器用于人体运动。

Cellulose nanocrystalline hydrogel based on a choline chloride deep eutectic solvent as wearable strain sensor for human motion.

机构信息

College of Energy, Xiamen University, Xiamen, 361102, China.

College of Energy, Xiamen University, Xiamen, 361102, China; Fujian Engineering and Research Center of Clean and High-valued Technologies for Biomass, Xiamen Key Laboratory of High-valued Utilization of Biomass, Xiamen University, Xiamen, 361102, China.

出版信息

Carbohydr Polym. 2021 Mar 1;255:117443. doi: 10.1016/j.carbpol.2020.117443. Epub 2020 Dec 7.

Abstract

Owning to the viscoelastic properties, good biocompatibility and high strain sensitivity, choline chloride-based deep eutectic solvent (DES) hydrogels have been considered to be promising wearable strain sensors for human motion. However, traditional hydrogels are far away from the wearable strain sensor applications caused by their unsatisfied conductivity and weak mechanical properties. Herein, the strategy for functional ionic inorganic/organic interpenetrating (IPN) hydrogels preparation by cyclic freezing/thawing method was successfully developed. Polyvinyl alcohol (PVA) was proposed to dissolve in choline chlorede-based DES as hydrogel matrix for the first time. Encouragingly, the obtained DES/PVA/CNCs/g-CN hydrogel (choline chloride with glucose) exhibits excellent mechanical properties, included excellent tensile strength (≈ 2.55 MPa), high elongation (≈1200 %) and satisfactory tensile modulus (≈3.65 MPa). Interestingly, the thermal diffusivity (the maximum value was 0.675 W/mK) and conductivity (the maximum value was 0.18 mm/s) of the DES-hydrogels were successfully achieved through adding graphitic-like nitride nanosheet (g-CN) and sustainable cellulose nanocrystalline (CNCs). These enhancements were attributed to the synergistic interactions of powerful hydrogen bonding among DES, CNCs, g-CN and PVA chains. More importantly, the as-prepared hydrogels have the potential as a human motion sensor to accurately in-situ detect human activities on the fingers, wrists, elbows and knee joints. Those hydrogel-type strain sensors with flexibility, excellent mechanical properties, self-recovery, good heat transfer, and electrical conductivity have broad application prospects in the fields of intelligent robot, bionic prostheses, and human care areas.

摘要

由于具有黏弹性、良好的生物相容性和高应变敏感性,基于氯化胆碱的深共晶溶剂(DES)水凝胶被认为是有前途的可穿戴应变传感器,可用于人体运动。然而,由于传统水凝胶的电导率和机械强度不理想,它们远不能满足可穿戴应变传感器的应用要求。在此,通过循环冷冻/解冻方法成功开发了功能离子无机/有机互穿(IPN)水凝胶的制备策略。首次提出将聚乙烯醇(PVA)溶解在基于氯化胆碱的 DES 中作为水凝胶基质。令人鼓舞的是,所得到的 DES/PVA/CNCs/g-CN 水凝胶(含葡萄糖的氯化胆碱)表现出优异的机械性能,包括优异的拉伸强度(≈2.55 MPa)、高伸长率(≈1200%)和令人满意的拉伸模量(≈3.65 MPa)。有趣的是,通过添加类石墨氮化纳米片(g-CN)和可持续纤维素纳米晶(CNCs),成功实现了 DES-水凝胶的热扩散率(最大值为 0.675 W/mK)和电导率(最大值为 0.18 mm/s)。这些增强归因于 DES、CNCs、g-CN 和 PVA 链之间强大氢键的协同相互作用。更重要的是,所制备的水凝胶具有作为人体运动传感器的潜力,可准确原位检测手指、手腕、肘部和膝关节上的人体活动。这些具有柔韧性、优异机械性能、自恢复性、良好热传递和导电性的水凝胶应变传感器在智能机器人、仿生假肢和人类护理领域具有广阔的应用前景。

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