[1]鄒中妃,羅男,王宇,等.導電水凝膠在智能穿戴中的研究進展[J].中國材料進展,2025,44(05):474-481.[doi:10.7502/j.issn.1674-3962.202303019]
ZOU Zhongfei,LUO Nan,WANG Yu,et al.Research Advancement of Conductive Hydrogels in Intelligent Wearables[J].MATERIALS CHINA,2025,44(05):474-481.[doi:10.7502/j.issn.1674-3962.202303019]
點擊復制
導電水凝膠在智能穿戴中的研究進展(
)
中國材料進展[ISSN:1674-3962/CN:61-1473/TG]
- 卷:
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44
- 期數(shù):
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2025年05
- 頁碼:
-
474-481
- 欄目:
-
- 出版日期:
-
2025-05-30
文章信息/Info
- Title:
-
Research Advancement of Conductive Hydrogels in Intelligent Wearables
- 文章編號:
-
1674-3962(2025)05-0474-08
- 作者:
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鄒中妃; 羅男; 王宇; 申振; 陳躍威
-
1. 貴州理工學院機械工程學院,貴州 貴陽 550000
2. 貴州大學機械工程學院,貴州 貴陽 550025
等
- Author(s):
-
ZOU Zhongfei; LUO Nan; WANG Yu; SHEN Zhen; CHEN Yuewei
-
1. College of Mechanical Engineering, Guizhou Institute of Technology, Guiyang 550000, China
2. School of Mechanical Engineering, Guizhou University, Guiyang 550025, China
et al.
-
- 關鍵詞:
-
導電水凝膠; 可穿戴設備; 自愈性; 自粘性
- Keywords:
-
conductive hydrogel; wearable devices; self-healing; self-adhesive
- 分類號:
-
TB34;TP212
- DOI:
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10.7502/j.issn.1674-3962.202303019
- 文獻標志碼:
-
A
- 摘要:
-
導電水凝膠是一種將導電介質和親水性基質有機結合并具有柔性及電化學性能的新型復合水凝膠,其良好的保濕抗凍性、力學性能以及自愈性等使其成為可穿戴設備的理想材料。聚焦多功能導電水凝膠的最新進展,總結了優(yōu)化導電水凝膠的導電性能、保濕抗凍性、力學性能、自愈性及自粘性的有效方法,介紹了導電水凝膠在智能可穿戴設備中的應用研究進展,最后對多功能導電水凝膠所面臨的挑戰(zhàn)與未來發(fā)展進行了討論。
- Abstract:
-
Conductive hydrogel is a new type of composite hydrogel which combines conductive medium and hydrophilic matrix and has flexible and electrochemical properties. Conductive hydrogels are ideal materials for wearable devices due to their good moisture preserving, antifreeze, mechanical properties and selfhealing properties. This study focuses on the latest advancements of multifunctional conductive hydrogels, and summarizes the effective methods to optimize the conductive property, moisturizing and antifreezing properties,mechanical property, self-healing property and self-adhesive property of conductive hydrogels. The advancements of the application of conductive hydrogels in smart wearable devices are highlighted. Finally, the challenges and future development of multifunctional conductive hydrogels are discussed.
備注/Memo
- 備注/Memo:
-
收稿日期:2023-03-28修回日期:2023-11-29
基金項目:國家自然科學基金項目(52465035);貴州省科技計劃項目(黔科合基礎-ZK[2024]一般510);貴州省高等學校工程研究中心項目(黔教技[2023]040)
第一作者:鄒中妃,女,1990年生,副教授,碩士生導師
通訊作者:陳躍威,男,1990年生,實驗師,
Email:ywchen3@gzu.edu.cn
更新日期/Last Update:
2025-04-27