论文成果
Incorporation of cupric sulfate and vanillin empowered poly (vinyl alcohol) hydrogel as flexible sensing device
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发表刊物:Polymer
关键字:Vanillin-coupled PVA,Hydrogel,CuSO4,Sensing properties,Antimicrobial activity
摘要:Poly (vinyl alcohol) (PVA) attracts increasing interest in hydrogel field, but it suffers from some obstacles including multi-component, complex preparation process, inadequate mechanical properties, and poor bacteriostatic properties, which hinder its application such as flexible electric devices. In the study, a novel strategy was put forward to make the conductive hydrogel by a combination of coupling vanillin onto PVA and immersing CuSO4 solution. Coupled vanillin as an accelerator regulates the formation of hydrophobic microcrystal network to enhance the mechanical properties of the hydrogel. CuSO4 as conductive medium improves the amorphous network by the salting-out effect to further reinforce the mechanical properties of the hydrogel. The optimized hydrogel is super-tough, and its toughness, tensile strength, and elongation at break are 15.05 MJ•m 3, 4.72 MPa, and 737.80 %, respectively. The conductive hydrogel was assembled into a flexible sensing device and exhibits reliable sensitivity (GF = 2.94, Response time = 0.22 s), stability, and durability for monitoring human activities. In addition, conductive hydrogel possesses frost resistance at -20 ◦C without the introduction of cryoprotectants, and good antimicrobial activity. It provides a general method and reference example for the development of multifunctional hydrogel electronic materials.
合写作者:赵羽泽
第一作者:宋晓峰(教师)
论文类型:期刊论文
卷号:327
页面范围:128384
是否译文:
发表时间:2025-04-09
收录刊物:SCI
附件:

宋晓峰

博士生导师 硕士生导师

教师拼音名称:songxiaofeng

电子邮箱:

所在单位:化学工程学院

学历:研究生(博士后)

性别:男

学位:理学博士学位

毕业院校:吉林大学

所属院系:化学工程学院

学科:高分子化学与物理
应用化学

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