...
首页> 外文期刊>Advanced Functional Materials >Polyphenol-Induced Adhesive Liquid Metal Inks for Substrate-Independent Direct Pen Writing
【24h】

Polyphenol-Induced Adhesive Liquid Metal Inks for Substrate-Independent Direct Pen Writing

机译:多酚诱导的粘合剂液态金属墨水,用于基板无关的直接笔写作

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Surface patterning of liquid metals (LMs) is a key processing step for LM-based functional systems. Current patterning methods are substrate specific and largely suffer from undesired imperfections-restricting their widespread applications. Inspired by the universal catechol adhesion chemistry observed in nature, LM inks stabilized by the assembly of a naturally abundant polyphenol, tannic acid, has been developed. The intrinsic adhesive properties of tannic acid containing multiple catechol/gallol groups, allow the inks to be applied to a variety of substrates ranging from flexible to rigid, metallic to plastics and flat to curved, even using a ballpoint pen. This method can be further extended from hand-written texts to complex conductive patterns using an automated setup. In addition, capacitive touch and hazardous heavy metal ion sensors have been patterned, leveraging from the synergistic combination of polyphenols and LMs. Overall, this strategy provides a unique platform to manipulate LMs from hand-written pattern to complex designs onto the substrate of choice, that has remained challenging to achieve otherwise.
机译:液体金属(LMS)的表面图案化是基于LM的功能系统的关键处理步骤。目前的图案化方法是特异性的基材,并且很大程度上存在不希望的缺陷 - 限制其广泛的应用。由本质上观察到的通用儿茶酚粘附化学的启发,已经开发出通过组装天然丰富的多酚,单宁酸稳定的LM油墨。含有多种儿茶酚/加仑基团的单宁酸的固有粘合性能,使油墨适用于从柔性到刚性,金属到塑料的各种基材上,甚至使用圆珠笔。使用自动设置可以从手写文本进一步从手写文本到复杂的导电模式。此外,电容式触摸和危险的重金属离子传感器已经被图案化,从多酚和LMS的协同组合中利用。总体而言,该策略提供了一种独特的平台,可以将LMS从手写模式操纵到复杂的设计到选择的基板上,这一直恰当地实现。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号