Abstract
The working of the silicon-based computers is based on semiconductor logic gates that perform binary arithmetic and logical operations. However, the continuous miniaturization of integrated circuits may reach atomic scales in a couple of decades. For achieving this miniaturization, great effort has been devoted to develop information processing and to increase computational complexity at the molecular level. In molecular logics, novel logic functions can be designed and performed that are not identical with existing processes operating in the electronic realm.
Keywords: Combinatorial logic gates, flip-flops, logic gates, molecular trafficking, moleculator supramolecular chemistry.
Current Organic Chemistry
Title:Supramolecular Switches-Advanced Molecular Logic and Computation Molecular Logic Gates
Volume: 18 Issue: 22
Author(s): Navneet Kaur
Affiliation:
Keywords: Combinatorial logic gates, flip-flops, logic gates, molecular trafficking, moleculator supramolecular chemistry.
Abstract: The working of the silicon-based computers is based on semiconductor logic gates that perform binary arithmetic and logical operations. However, the continuous miniaturization of integrated circuits may reach atomic scales in a couple of decades. For achieving this miniaturization, great effort has been devoted to develop information processing and to increase computational complexity at the molecular level. In molecular logics, novel logic functions can be designed and performed that are not identical with existing processes operating in the electronic realm.
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Cite this article as:
Kaur Navneet, Supramolecular Switches-Advanced Molecular Logic and Computation Molecular Logic Gates, Current Organic Chemistry 2014; 18 (22) . https://dx.doi.org/10.2174/1385272819666141107224507
DOI https://dx.doi.org/10.2174/1385272819666141107224507 |
Print ISSN 1385-2728 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5348 |
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