E
Edward A. Lewis
Researcher at University of Manchester
Publications - 48
Citations - 2881
Edward A. Lewis is an academic researcher from University of Manchester. The author has contributed to research in topics: Scanning transmission electron microscopy & Quantum dot. The author has an hindex of 23, co-authored 47 publications receiving 2395 citations.
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Journal ArticleDOI
Production of few-layer phosphorene by liquid exfoliation of black phosphorus
TL;DR: The liquid exfoliation of black phosphorus in N-methyl-2-pyrrolidone to form few-layer phosphorene nanosheets is reported.
Journal ArticleDOI
Tin(II) Sulfide (SnS) Nanosheets by Liquid-Phase Exfoliation of Herzenbergite: IV-VI Main Group Two-Dimensional Atomic Crystals
Jack R. Brent,David J. Lewis,Tommy Lorenz,Edward A. Lewis,Nicky Savjani,Sarah J. Haigh,Gotthard Seifert,Brian Derby,Paul O'Brien +8 more
TL;DR: The liquid-phase exfoliation of tin(II) sulfide to produce SnS nanosheets in N-methyl-2-pyrrolidone is reported and quantum chemical calculations on the optoelectronic characteristics of bulk and 10-layer down to monolayer SnS have been performed using a quantum chemical density functional tight-binding approach.
Journal ArticleDOI
Nanostructured Aptamer-Functionalized Black Phosphorus Sensing Platform for Label-Free Detection of Myoglobin, a Cardiovascular Disease Biomarker.
Vinod Kumar,Jack R. Brent,Munish Shorie,Harmanjit Kaur,Gaganpreet Chadha,Andrew G. Thomas,Edward A. Lewis,A. P. Rooney,Lan Nguyen,Xiang Li Zhong,M. Grace Burke,Sarah J. Haigh,Alex S. Walton,Paul D. McNaughter,Aleksander A. Tedstone,Nicky Savjani,Christopher A. Muryn,Paul O'Brien,Ashok K. Ganguli,David J. Lewis,Priyanka Sabherwal +20 more
TL;DR: The electrochemical detection of the redox active cardiac biomarker myoglobin using aptamer-functionalized black phosphorus nanostructured electrodes by measuring direct electron transfer is reported, opening up avenues to bedside technologies for multiplexed diagnosis of cardiovascular diseases in complex human samples.
Journal ArticleDOI
Heterostructures Produced from Nanosheet-Based Inks
Freddie Withers,Huafeng Yang,L. Britnell,A. P. Rooney,Edward A. Lewis,Alexandre Felten,Colin R. Woods,V. Sanchez Romaguera,Thanasis Georgiou,Axel Eckmann,Yong-Jin Kim,Stephen G. Yeates,Sarah J. Haigh,Andre K. Geim,Kostya S. Novoselov,Cinzia Casiraghi +15 more
TL;DR: In this article, the authors show that such heterostructures can be assembled from chemically exfoliated 2D crystals, allowing for low-cost and scalable methods to be used in device fabrication.
Journal ArticleDOI
Heterostructures produced from nanosheet-based inks
Freddie Withers,Huafeng Yang,L. Britnell,A. P. Rooney,Edward A. Lewis,Alexandre Felten,Colin R. Woods,V. Sanchez Romaguera,Thanasis Georgiou,Axel Eckmann,Yong-Jin Kim,Stephen G. Yeates,Sarah J. Haigh,Andre K. Geim,Kostya S. Novoselov,Cinzia Casiraghi +15 more
TL;DR: It is shown that such heterostructures can be assembled from chemically exfoliated 2D crystals, allowing for low-cost and scalable methods to be used in device fabrication.