Quantum π-Index in Advanced Materials: Predictive Framework for Nanostructures, Functional Polymers, and Superconducting States

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1. Verfasser: Ndenga, Barack
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Veröffentlicht: Zenodo 2025
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author Ndenga, Barack
author_facet Ndenga, Barack
contents <p>This work is the fourth installment of the “Quantum-π Series,” introducing a high-level application of the quantum-π framework to advanced materials. I extend the formalism of quantum-π delocalization to graphene nanostructures, conjugated polymers, and layered superconductors, demonstrating how π-electron topology governs reactivity, transport, and electronic coherence.</p> <p>The article provides conceptual foundations, predictive models, and application-ready insights for materials science, nanotechnology, and quantum engineering. By establishing a unified π-based metric across different classes of materials, this paper opens new perspectives for the rational design of high-performance polymers, nanostructures, and superconducting systems.</p>
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spellingShingle Quantum π-Index in Advanced Materials: Predictive Framework for Nanostructures, Functional Polymers, and Superconducting States
Ndenga, Barack
quantum-π π-electron delocalization aromaticity nanomaterials conjugated polymers superconductors graphene electronic reactivity quantum materials molecular topology
<p>This work is the fourth installment of the “Quantum-π Series,” introducing a high-level application of the quantum-π framework to advanced materials. I extend the formalism of quantum-π delocalization to graphene nanostructures, conjugated polymers, and layered superconductors, demonstrating how π-electron topology governs reactivity, transport, and electronic coherence.</p> <p>The article provides conceptual foundations, predictive models, and application-ready insights for materials science, nanotechnology, and quantum engineering. By establishing a unified π-based metric across different classes of materials, this paper opens new perspectives for the rational design of high-performance polymers, nanostructures, and superconducting systems.</p>
title Quantum π-Index in Advanced Materials: Predictive Framework for Nanostructures, Functional Polymers, and Superconducting States
topic quantum-π π-electron delocalization aromaticity nanomaterials conjugated polymers superconductors graphene electronic reactivity quantum materials molecular topology
url https://doi.org/10.5281/zenodo.17662004