Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, Singapore, 117585, Singapore.
Adv Mater. 2017 May;29(18). doi: 10.1002/adma.201606483. Epub 2017 Mar 1.
Chemical logic gates can be fabricated by synthesizing molecules that have the ability to detect external stimuli (e.g., temperature or pH) and provide logical outputs. It is, however, challenging to fabricate a system that consists of many logic gates using this method: complex molecules can be difficult to synthesize and these logic gates typically cannot be integrated together. Here, we fabricated different types of logic gates by assembling a combination of different types of stimuli-responsive hydrogels that change their size under the influence of one type of stimulus. Importantly, the preparation of these stimuli-responsive hydrogels is widely reported and technically simple. Through designing the geometry of the systems, we fabricated the YES, NOT, OR, AND, NOR, and NAND gates. Although the hydrogels respond to different types of stimuli, their outputs are the same: a change in size of the hydrogel. Hence, we show that the logic gates can be integrated easily (e.g., by connecting an AND gate to an OR gate). In addition, we fabricated a standalone system with the size of a normal drug tablet (i.e., a "smart tablet") that can analyze (or diagnose) different stimuli and control the release of a chemical (or drug) via the logic gates.
化学逻辑门可以通过合成具有检测外部刺激(例如温度或 pH 值)并提供逻辑输出能力的分子来制造。然而,使用这种方法制造由许多逻辑门组成的系统具有挑战性:复杂的分子可能难以合成,并且这些逻辑门通常无法集成在一起。在这里,我们通过组装由不同类型的响应性水凝胶组成的组合来制造不同类型的逻辑门,这些水凝胶在受到一种类型的刺激时会改变其大小。重要的是,这些响应性水凝胶的制备得到了广泛的报道,技术也很简单。通过设计系统的几何形状,我们制造了 YES、NOT、OR、AND、NOR 和 NAND 门。尽管水凝胶对不同类型的刺激做出反应,但它们的输出是相同的:水凝胶的大小变化。因此,我们表明逻辑门可以很容易地集成(例如,通过将 AND 门连接到 OR 门)。此外,我们制造了一个具有普通药物片剂大小的独立系统(即“智能片剂”),该系统可以通过逻辑门分析(或诊断)不同的刺激并控制化学物质(或药物)的释放。