Čejková Jitka, Banno Taisuke, Hanczyc Martin M, Štěpánek František
University of Chemistry and Technology Prague.
Keio University.
Artif Life. 2017 Fall;23(4):528-549. doi: 10.1162/ARTL_a_00243. Epub 2017 Oct 6.
Liquid droplets are very simple objects present in our everyday life. They are extremely important for many natural phenomena as well as for a broad variety of industrial processes. The conventional research areas in which the droplets are studied include physical chemistry, fluid mechanics, chemical engineering, materials science, and micro- and nanotechnology. Typical studies include phenomena such as condensation and droplet formation, evaporation of droplets, or wetting of surfaces. The present article reviews the recent literature that employs droplets as animated soft matter. It is argued that droplets can be considered as liquid robots possessing some characteristics of living systems, and such properties can be applied to unconventional computing through maze solving or operation in logic gates. In particular, the lifelike properties and behavior of liquid robots, namely (i) movement, (ii) self-division, and (iii) group dynamics, will be discussed.
液滴是我们日常生活中存在的非常简单的物体。它们对许多自然现象以及各种各样的工业过程都极为重要。研究液滴的传统领域包括物理化学、流体力学、化学工程、材料科学以及微米和纳米技术。典型的研究包括诸如冷凝和液滴形成、液滴蒸发或表面润湿等现象。本文综述了最近将液滴用作有生命的软物质的文献。有人认为,液滴可被视为具有一些生命系统特征的液体机器人,并且这些特性可通过迷宫求解或逻辑门操作应用于非常规计算。特别是,将讨论液体机器人逼真的特性和行为,即(i)运动、(ii)自我分裂和(iii)群体动力学。