The Micro-Nano Innovation Lab ("mini lab") @Hamlyn investigates and utilises light-matter interactions to develop new intelligent sensing and robotic strategies in micro/nano scales.

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Research lab info

What we do

The Micro-Nano Innovation Lab ("mini lab") @Hamlyn investigates and utilises light-matter interactions to develop new intelligent sensing and robotic strategies in micro/nano scales. The research involves designing and fabricating micro/nanostructures for diagnostics (e.g. infections, cancer, neurodegenerative diseases) and microscopic therapies/surgeries (e.g. localised drug delivery, novel minimally invasive treatment).

Why it is important?

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How can it benefit patients?

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Citation

BibTex format

@inproceedings{Kim:2014,
author = {Kim, JA and Qin, H and Hwang, T and Kim, HU and Atul, K and Kim, T},
title = {Novel environmental monitoring sensor technologies with fiber optics and various sensing layers},
year = {2014}
}

RIS format (EndNote, RefMan)

TY  - CPAPER
AB - In this study, we have suggested various sensors for aerosol, VOCs (volatile organic compounds), and biomolecules detecting with diverse sensing layers such as, tetraethylorthosilicate (TEOS), thymol blue, polypyrrole, graphene, graphene oxide (GO), reduced graphene oxide (rGO), DNA, and so on. Every sensors have shown very interesting sensing characteristics with good performances. Steadily, we are proceeding various fiber optic sensors with fascinating sensing layers and mechanisms as well.
AU - Kim,JA
AU - Qin,H
AU - Hwang,T
AU - Kim,HU
AU - Atul,K
AU - Kim,T
PY - 2014///
TI - Novel environmental monitoring sensor technologies with fiber optics and various sensing layers
ER -