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智能之路:利用刺激响应材料构建智能功能体系

The Pathway to Intelligence: Using Stimuli-Responsive Materials as Building Blocks for Constructing Smart and Functional Systems.

机构信息

Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, Singapore, 117585, Singapore.

出版信息

Adv Mater. 2019 Mar;31(11):e1804540. doi: 10.1002/adma.201804540. Epub 2019 Jan 9.

Abstract

Systems that are intelligent have the ability to sense their surroundings, analyze, and respond accordingly. In nature, many biological systems are considered intelligent (e.g., humans, animals, and cells). For man-made systems, artificial intelligence is achieved by massively sophisticated electronic machines (e.g., computers and robots operated by advanced algorithms). On the other hand, freestanding materials (i.e., not tethered to a power supply) are usually passive and static. Hence, herein, the question is asked: can materials be fabricated so that they are intelligent? One promising approach is to use stimuli-responsive materials; these "smart" materials use the energy supplied by a stimulus available from the surrounding for performing a corresponding action. After decades of research, many interesting stimuli-responsive materials that can sense and perform smart functions have been developed. Classes of functions discussed include practical functions (e.g., targeting and motion), regulatory functions (e.g., self-regulation and amplification), and analytical processing functions (e.g., memory and computing). The pathway toward creating truly intelligent materials can involve incorporating a combination of these different types of functions into a single integrated system by using stimuli-responsive materials as the basic building blocks.

摘要

具有感知周围环境、分析并做出相应反应能力的系统称为智能系统。在自然界中,许多生物系统都被认为是智能的(例如人类、动物和细胞)。对于人造系统,人工智能是通过极其复杂的电子设备(例如由高级算法操作的计算机和机器人)来实现的。另一方面,独立的材料(即没有连接到电源)通常是被动和静态的。因此,在这里提出了一个问题:是否可以制造出具有智能的材料?一种很有前途的方法是使用对刺激有响应的材料;这些“智能”材料利用来自周围环境的刺激提供的能量来执行相应的动作。经过几十年的研究,已经开发出许多有趣的能够感知和执行智能功能的刺激响应材料。讨论的功能类别包括实用功能(例如靶向和运动)、调节功能(例如自我调节和放大)以及分析处理功能(例如记忆和计算)。创建真正智能材料的途径可能涉及通过将这些不同类型的功能组合到单个集成系统中,使用对刺激有响应的材料作为基本构建块。

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