私密直播全婐app免费大渔直播,国产av成人无码免费视频,男女同房做爰全过程高潮,国产精品自产拍在线观看

Links
Contact Info.
  • Address:浙江理工大學,材料與紡織學院,先進紡織材料與制備技術教育部重點實驗室
  • Zip:310018
  • Tel:0571-86843071
  • Fax:0571-86843082
  • Email:342099315@qq.com
Current Location :> Home > Publications > Text
Intrinsically Conductive Bifunctional Nanocellulose-Reinforced Robust and Self-Healable Electronic Skin: Deep Insights into Multiple Bonding Network, Property Reinforcement, and Sensing Mechanism
writer:Dan Ge, Hou-Yong Yu, Zhouyu Miao, Xia He, and Somia Yassin Hussain Abdalkarim
keywords:silk fibroin, nanocellulose, hydrogen-bonding networks, electronic skin, biosensors
source:期刊
specific source:doi.org/10.1021/acssuschemeng.2c06508
Issue time:2022年

The rapid development of intelligent electronic skin with skin-like protein structures and noninvasive adhesion to the skin has attracted attention in the field of wearable electronics.

However, poor mechanical strength, narrow sensing range, and low adhesion hinder its practical applications. Herein, a multifunctional composite sensor (SCGC) was achieved by incorporating an intrinsically conductive bifunctional nanocellulose (CNFene) into a Ca2+/glycerin (GL)-modified silk fibroin (SF) matrix. The SCGC film showed robust mechanical strength (tensile strength = 76.1 MPa, elongation at break = 144.2%), wide sensing range, and excellent self-adhesion ability (strong adhesion at low temperatures even in liquid nitrogen). Especially, the bifunctional nanocellulosereinforced electronic skin can sensitively detect small- and largescale human motion and has high-temperature change sensitivity (the temperature sensitivity = ?5.2%/°C) due to multiple interactions of the double hydrogen-bonding network and calcium ion chelation among SF/CNFene/GL/Ca2+. Therefore, this strategy has potential applications in flexible electrodes, biomimetic sensors, and temperature biosensors.