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Design and Analysis of Compact DNA Strand Displacement Circuits for Analog Computation Using Autocatalytic Amplifiers
A main goal in DNA computing is to build DNA circuits to compute designated functions using a minimal number of DNA strands. Here, we propose a novel architecture to build compact DNA strand displacem
NIAID Data Ecosystem120
Digital Processing with a Three-State Molecular Switch
Certain molecular switches respond to input stimulations producing detectable outputs. The interplay of these signals can be exploited to reproduce basic logic operations at the molecular level. The t
NIAID Data Ecosystem40
The Isoindazole Nucleus as a Donor in Fullerene-Based Dyads. Evidence for Electron Transfer
A series of isoindazole-C60 dyads 4a−c based on pyrazolino[60]fullerene have been prepared by 1,3-dipolar cycloadditions of the nitrile imines, generated in situ from hydrazones 3a−c, to C60. Molecula
NIAID Data Ecosystem30
Three Distinct Equilibrium States via Self-Assembly: Simple Access to a Supramolecular Ion-Controlled NAND Logic Gate
During the past several decades, considerable effort has focused on self-assembled systems. However, most work has been directed toward understanding the equilibrium between two major chemical entitie
NIAID Data Ecosystem60
Improving the Performance of DNA Strand Displacement Circuits by Shadow Cancellation
DNA strand displacement circuits are powerful tools that can be rationally engineered to implement molecular computing tasks because they are programmable, cheap, robust, and predictable. A key featur
Figshare2018-11-08 更新40



