2018
DOI: 10.1007/s11082-018-1462-8
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DNA implementation for optical waveguide as a switchable transmission line and memristor

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Cited by 14 publications
(5 citation statements)
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“…The tuning of the hydrophobic or hydrophilic properties of the DNA strand could be used to tune the properties and structure of the DNA assembly . Different DNA types have been observed to have different electrical characteristics and could be used as a reconfigurable material after being placed between two optical metal layers . The divergence of the DNA types was selected as an optical switch for controlling the current and voltage density .…”
Section: Conclusion and Further Perspectivesmentioning
confidence: 99%
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“…The tuning of the hydrophobic or hydrophilic properties of the DNA strand could be used to tune the properties and structure of the DNA assembly . Different DNA types have been observed to have different electrical characteristics and could be used as a reconfigurable material after being placed between two optical metal layers . The divergence of the DNA types was selected as an optical switch for controlling the current and voltage density .…”
Section: Conclusion and Further Perspectivesmentioning
confidence: 99%
“…The divergence of the DNA types was selected as an optical switch for controlling the current and voltage density . An optical memristor and an optical “YES” gate were achieved with the DNA optical waveguide . The DNA strand exchange is highly programmed for the rational design of reaction networks to realize switchable catalysis. For example, feedback-controlled DNA circuits were designed to engineer hierarchical control of the enzymatic actuators to program the downstream enzymatic processes .…”
Section: Conclusion and Further Perspectivesmentioning
confidence: 99%
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“…Accordingly, studies on the biomemristors prepared using DNA have been conducted recently. Biomemristors composed of gold/DNA/silver layers and silver/DNA/silver layers on silicon dioxide substrates were reported to demonstrate resistive switching functions through an optical waveguide [ 82 ]. To achieve this, the DNA layer was sandwiched between two different plasmonic metal layers.…”
Section: Electrochemical Memristormentioning
confidence: 99%