State Key Lab of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University, 200240 Shanghai, China.
Future Materials Innovation Center, Zhangjiang Institute for Advanced Study, Shanghai Jiao Tong University, 201203 Shanghai, China.
ACS Nano. 2024 Sep 10;18(36):24741-24769. doi: 10.1021/acsnano.4c08338. Epub 2024 Aug 23.
The manipulation of interactions between light and matter plays a crucial role in the evolution of organisms and a better life for humans. As a result of natural selection, precise light-regulatory systems of biology have been engineered that provide many powerful and promising bioinspired strategies. As the "king of disguise", cephalopods, which can perfectly control the propagation of light and thus achieve excellent surrounding-matching via their delicate skin structure, have made themselves an exciting source of inspiration for developing optical and thermal regulation nanomaterials. This review presents cutting-edge advancements in cephalopod-inspired optical and thermal regulation nanomaterials, highlighting the key milestones and breakthroughs achieved thus far. We begin with the underlying mechanisms of the adaptive color-changing ability of cephalopods, as well as their special hierarchical skin structure. Then, different types of bioinspired nanomaterials and devices are comprehensively summarized. Furthermore, some advanced and emerging applications of these nanomaterials and devices, including camouflage, thermal management, pixelation, medical health, sensing and wireless communication, are addressed. Finally, some remaining but significant challenges and potential directions for future work are discussed. We anticipate that this comprehensive review will promote the further development of cephalopod-inspired nanomaterials for optical and thermal regulation and trigger ideas for bioinspired design of nanomaterials in multidisciplinary applications.
光与物质相互作用的调控在生物的进化和人类的美好生活中起着至关重要的作用。由于自然选择,生物工程中已经设计出了精确的光调控系统,这些系统提供了许多强大且有前途的仿生策略。作为“伪装之王”的头足类动物,通过其精致的皮肤结构,可以完美地控制光的传播,从而实现出色的环境匹配,为开发光学和热调节纳米材料提供了令人兴奋的灵感来源。本综述介绍了头足类动物启发的光学和热调节纳米材料的最新进展,强调了迄今为止取得的关键里程碑和突破。我们首先介绍了头足类动物自适应变色能力的潜在机制,以及它们特殊的分层皮肤结构。然后,全面总结了不同类型的仿生纳米材料和器件。此外,还介绍了这些纳米材料和器件的一些先进和新兴应用,包括伪装、热管理、像素化、医疗保健、传感和无线通信。最后,讨论了一些仍然存在但具有重要意义的挑战和未来工作的潜在方向。我们预计,这篇全面的综述将促进基于头足类动物的光学和热调节纳米材料的进一步发展,并为多学科应用中的仿生纳米材料设计引发新的思路。