材料科学
可伸缩电子设备
电池(电)
超弹性材料
可穿戴技术
聚苯乙烯
纳米技术
柔性电子器件
可穿戴计算机
数码产品
复合材料
印刷电子产品
电气工程
墨水池
计算机科学
聚合物
功率(物理)
非线性系统
嵌入式系统
工程类
物理
量子力学
作者
Rajan Kumar,Jae‐Wook Shin,Lu Yin,Jung‐Min You,Ying Shirley Meng,Joseph Wang
标识
DOI:10.1002/aenm.201602096
摘要
While several stretchable batteries utilizing either deterministic or random composite architectures have been described, none have been fabricated using inexpensive printing technologies. In this study, the authors printed a highly stretchable, zinc‐silver oxide (Zn‐Ag 2 O) battery by incorporating polystyrene‐ block ‐polyisoprene‐ block ‐polystyrene (SIS) as a hyperelastic binder for custom‐made printable inks. The remarkable mechanical properties of the SIS binder lead to an all‐printed, stretchable Zn‐Ag 2 O rechargeable battery with a ≈2.5 mA h cm −2 reversible capacity density even after multiple iterations of 100% stretching. This battery offers the highest reversible capacity and discharge current density for intrinsically stretchable batteries reported to date. The electrochemical and mechanical properties are characterized under different strain conditions. The new stress‐enduring printable inks pave ways for further developing stretchable electronics for the wide range of wearable applications.
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