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A Systems-Level Framework Integrating Geometry-Controlled Plasmonics, AI-Driven Molecular Kinetics, and Organoid Validation for Next-Generation Biosensing

2026-02-19

Abstract excerpt

<h4>ABSTRACT</h4> Plasmonic nanosensors - spanning nanopores, nanoantennas, and metasurfaces - achieve extreme electromagnetic (EM) field confinement that amplifies molecular interaction signals by orders of magnitude. Yet the full diagnostic potential of these platforms remains unrealised because the non-linear coupling between geometry, near-field physics, stochastic binding kinetics, and signal transduction is...

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Literature Corpus work
d257f64f-b047-50bb-8c65-e89c2b47eaeb
DOI
10.64898/2026.02.17.706264
Open publication

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A Systems-Level Framework Integrating Geometry-Controlled Plasmonics, AI-Driven Molecular Kinetics, and Organoid Validation for Next-Generation BiosensingDOI 10.64898/2026.02.17.706264
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