Department of Chemistry, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 08826, South Korea.
Sci Adv. 2019 Feb 22;5(2):eaau2124. doi: 10.1126/sciadv.aau2124. eCollection 2019 Feb.
Using nanoparticles as substrates for computation enables algorithmic and autonomous controls of their unique and beneficial properties. However, scalable architecture for nanoparticle-based computing systems is lacking. Here, we report a platform for constructing nanoparticle logic gates and circuits at the single-particle level on a supported lipid bilayer. Our "lipid nanotablet" platform, inspired by cellular membranes that are exploited to compartmentalize and control signaling networks, uses a lipid bilayer as a chemical circuit board and nanoparticles as computational units. On a lipid nanotablet, a single-nanoparticle logic gate senses molecules in solution as inputs and triggers particle assembly or disassembly as an output. We demonstrate a set of Boolean logic operations, fan-in/fan-out of logic gates, and a combinational logic circuit such as a multiplexer. We envisage that our approach to modularly implement nanoparticle circuits on a lipid bilayer will create new paradigms and opportunities in molecular computing, nanoparticle circuits, and systems nanoscience.
利用纳米粒子作为计算的基质,可以实现对其独特而有益的性质的算法和自主控制。然而,基于纳米粒子的计算系统缺乏可扩展的架构。在这里,我们报告了一个在支持的脂质双层上构建基于纳米粒子的逻辑门和电路的平台。我们的“脂质纳管平台”灵感来自于细胞膜,细胞膜被用来分隔和控制信号网络,它使用脂质双层作为化学电路板,纳米粒子作为计算单元。在脂质纳管上,单个纳米粒子逻辑门可以作为输入来检测溶液中的分子,并作为输出触发粒子的组装或拆卸。我们展示了一组布尔逻辑操作、逻辑门的扇入/扇出,以及一个组合逻辑电路,如多路复用器。我们设想,我们在脂质双层上模块化地实现纳米粒子电路的方法将在分子计算、纳米粒子电路和系统纳米科学中创造新的范例和机会。