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From the 1 of 5 linked papers with an AI index.

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5 papers

cond-mat.mes-hall2026

Observation of long-lived spin order in nanoconfined water

Rohma Khan, Kang Xu, Nathaniel Jeffries +4

The authors use nitrogen‑vacancy center NMR to study water confined in 5.6 nm channels, observing a long‑lived spin order that appears as a proton doublet likely caused by hyperfin…

physics.chem-ph2026

Enhanced Ionic Conductivity of confined Ionic-Liquid in Angstrom-scale 2D channels

Jing Yang, Raj Kumar Gogoi, Chen Ming +10

Understanding ion-transport under molecular confinement is essential for developing next-generation energy technologies, where ionic motion often occurs within nanoscale or angstro…

cond-mat.mes-hall2026

Direct imaging elucidates ionic memory in two-dimensional nanochannels

Kalluvadi Veetil Saurav, Nathan Ronceray, Baptiste Coquinot +5

Nanofluidic memristors promise brain-inspired information processing with ions, yet their microscopic origin remains debated. So far, ionic memory has been attributed to ion-specif…

cond-mat.mes-hall2026

An Open-Source Framework for Measurement and Analysis of Nanoscale Ionic Transport

Yichao Wang, Munan Fang, Aziz Roshanbhai Lokhandwala +2

Nanofluidic systems exploit nanometre-scale confinement in channels and pores to regulate ionic transport, enabling functionalities such as osmotic energy harvesting and neuromorph…

cond-mat.mes-hall2024

Slow water in engineered nano-channels revealed by color-center-enabled sensing

Daniela Pagliero, Rohma Khan, Kapila Elkaduwe +7

Nanoscale confinement of molecules in a fluid can result in enhanced viscosity, local fluidic order, or collective motion. Confinement also affects ion transport and/or the rate an…