Banerjee Pratip Sankar, Rana Dhiraj Kumar, Banerjee Shib Shankar
Department of Materials Science and Engineering, Indian Institute of Technology Delhi, New Delhi 110016, India.
Department of Materials Science and Engineering, Indian Institute of Technology Delhi, New Delhi 110016, India.
Adv Colloid Interface Sci. 2022 Oct;308:102752. doi: 10.1016/j.cis.2022.102752. Epub 2022 Aug 18.
Liquid metal (LM)-based polymer composites are currently new breakthrough and emerging classes of soft multifunctional materials (SMMs) having immense transformative potential for soft technological applications. Currently, room-temperature LMs, mostly eutectic gallium‑indium and Galinstan alloys are used to integrate with soft polymer due to their outstanding properties such as high conductivity, fluidity, low adhesion, high surface tension, low cytotoxicity, etc. The microstructural alterations and interfacial interactions controlling the efficient integration of LMs with rubber are the most critical aspects for successful implementation of multifunctionality in the resulting material. In this review article, a fundamental understanding of microstructural alterations of LMs to the formation of well-defined percolating networks inside an insulating rubber matrix has been established by exploiting several existing theoretical and experimental studies. Furthermore, effects of the chemical modifications of an LM surface and its interfacial interactions on the compatibility between solid rubber and fluid filler phase have been discussed. The presence of thin oxide layer on the LM surface and the effects and challenges it poses to the adequate functionalization of these materials have been discussed. Plausible applications of SMMs in different soft matter technologies, like soft robotics, flexible electronics, soft actuators, sensors, etc. have been provided. Finally, the current technical challenges and further prospective to the development of SMMs using non‑silicone rubbers have been critically discussed. This review is anticipated to infuse a new impetus to the associated research communities for the development of next generation SMMs.
基于液态金属(LM)的聚合物复合材料是目前新型的突破性软多功能材料(SMM),在软技术应用方面具有巨大的变革潜力。目前,室温液态金属,主要是共晶镓铟合金和加林斯坦合金,因其具有高导电性、流动性、低粘附性、高表面张力、低细胞毒性等优异性能,被用于与软聚合物结合。液态金属与橡胶有效结合过程中的微观结构变化和界面相互作用是使最终材料成功实现多功能性的最关键因素。在这篇综述文章中,通过利用现有的一些理论和实验研究,对液态金属在绝缘橡胶基体内部形成明确渗流网络的微观结构变化有了基本认识。此外,还讨论了液态金属表面化学改性及其界面相互作用对固体橡胶与流体填充相之间相容性的影响。探讨了液态金属表面薄氧化层的存在及其对这些材料充分功能化所带来的影响和挑战。介绍了软多功能材料在不同软物质技术中的合理应用,如软机器人技术、柔性电子学、软致动器、传感器等。最后,对使用非硅橡胶开发软多功能材料当前的技术挑战和进一步的前景进行了批判性讨论。预计这篇综述将为相关研究群体开发下一代软多功能材料注入新的动力。