Centre for Nanotechnology, Indian Institute of Technology Guwahati, Assam-781039, India.
Soft Matter. 2018 Apr 25;14(16):3182-3191. doi: 10.1039/c8sm00132d.
We demonstrate the feasibility of a self-propelling mushroom motor, namely a 'logibot', as a functional unit for the construction of a host of optimized binary logic gates. Emulating the chemokinesis of unicellular prokaryotes or eukaryotes, the logibots made stimuli responsive conditional movements at varied speeds towards a pair of acid-alkali triggers. A series of integrative logic operations and cascaded logic circuits, namely, AND, NAND, NOT, OR, NOR, and NIMPLY, have been constructed employing the decisive chemotactic migrations of the logibot in the presence of the pH gradient established by the sole or coupled effects of acid (HCl-catalase) and alkali (NaOH) drips inside a peroxide bath. The imposed acid and/or alkali triggers across the logibots were realized as inputs while the logic gates were functionally reconfigured to several operational modes by varying the pH of the acid-alkali inputs. The self-propelling logibot could rapidly sense the external stimuli, decide, and act on the basis of intensities of the pH triggers. The impulsive responses of the logibots towards and away from the external acid-alkali stimuli were interpreted as the potential outputs of the logic gates. The external stimuli responsive self-propulsion of the logibots following different logic gates and circuits can not only be an eco-friendly alternative to the silicon-based computing operations but also be a promising strategy for the development of intelligent pH-responsive drug delivery devices.
我们展示了一种自推进蘑菇马达(即 logibot)作为构建一系列优化二进制逻辑门的功能单元的可行性。logibots 模拟单细胞原核生物或真核生物的趋化作用,根据酸碱性触发对的变化速度做出条件性的应激运动。一系列综合逻辑运算和级联逻辑电路,如 AND、NAND、NOT、OR、NOR 和 NIMPLY,已经通过 logibot 在过氧化氢浴中仅由酸(HCl-过氧化氢酶)或碱(NaOH)滴的单独或耦合作用产生的 pH 梯度的决定性趋化迁移来构建。将施加在 logibot 上的酸和/或碱触发作为输入,而通过改变酸碱性输入的 pH 值,可以将逻辑门重新配置为几种工作模式。自推进的 logibot 可以快速感知外部刺激,并根据 pH 触发的强度做出决策和行动。logibot 对外部酸碱性刺激的反应和远离反应可以被解释为逻辑门的潜在输出。logibot 遵循不同逻辑门和电路的对外界刺激的响应自推进不仅可以作为一种环保的替代硅基计算操作的方法,也可以作为开发智能 pH 响应药物输送装置的有前途的策略。