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Organotitania-Based Nanostructures as a Suitable Platform for the Implementation of Binary, Ternary, and Fuzzy Logic Systems

机译:基于有机钛菊酯的纳米结构作为实施二进制,三元和模糊逻辑系统的合适平台

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摘要

Titanium dioxide nanocomposites were synthesized in hierarchical architectures through the use of a 1,4-dihydroxyanthraquinone photosensitizer. In the first step, the dye was either incorporated into the TiO2 core or adsorbed on its surface. In the subsequent phase, both structures were covered with an outer layer of titanium dioxide. The structure, morphology, aggregation, spectroscopic, and electrochemical properties of the synthesized TiO2-based materials are presented with emphasis on the photosensitization and the photocurrent switching phenomena, which are also discussed within the context of the optical logic gates implementation and fuzzy logic systems operation. We present three different interpretations of the photocurrent action spectra yielding binary, ternary, or fuzzy logic circuits.
机译:通过使用1,4-二羟基蒽醌光敏剂,在等级架构中合成二氧化钛纳米复合材料。 在第一步中,将染料掺入TiO 2核中或吸附在其表面上。 在随后的阶段中,两个结构覆盖有二氧化钛的外层。 合成的TiO2基材料的结构,形态,聚集,光谱和电化学性质,并强调光敏化和光电流切换现象,也在光学逻辑门实现和模糊逻辑系统操作的上下文中讨论 。 我们提出了三个不同的光电动作光谱解释,产生二进制,三元或模糊逻辑电路。

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