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Neil W. Barnett

Neil W. Barnett

D-Index & Metrics

Chemistry

D-Index
47
Citations
7765
World Ranking
15661
National Ranking
344

Overview

Neil W. Barnett is affiliated with Deakin University in Australia. Their research spans multiple fields including Pharmacology, Toxicology and Pharmaceutics, Chemistry, and Engineering. These disciplines reflect a multidisciplinary approach to scientific investigation.

The scientist's work is further categorized into specific subfields such as Toxicology, Analytical Chemistry, and Biomedical Engineering. The primary research topics covered by Neil W. Barnett include Forensic Toxicology and Drug Analysis, Analytical chemistry methods development, and Microfluidic and Capillary Electrophoresis Applications.

Neil W. Barnett has contributed scholarly articles to the journal Food Analytical Methods, which is also the sole frequent venue for their publications. Their notable recent paper is titled "Extraction and Determination of Morphine Present on the Surface of Australian Food Grade Poppy Seeds Using Acidic Potassium Permanganate Chemiluminescence Detection," published in 2020 by Food Analytical Methods.

  • Extraction and Determination of Morphine Present on the Surface of Australian Food Grade Poppy Seeds Using Acidic Potassium Permanganate Chemiluminescence Detection (2020, Food Analytical Methods)

Collaboration is an aspect of Neil W. Barnett's research activities, as evidenced by frequent co-authors. These include Mitchell T. Montgomery, Xavier A. Conlan, Ashton G. Theakstone, Stuart D. Purcell, and Zoe M. Smith, with each having co-authored one publication with Barnett.

  • Mitchell T. Montgomery
  • Xavier A. Conlan
  • Ashton G. Theakstone
  • Stuart D. Purcell
  • Zoe M. Smith

Best Publications

  • Analytical applications of tris(2,2′-bipyridyl)ruthenium(III) as a chemiluminescent reagent

    Richard D. Gerardi;Neil W. Barnett;Simon W. Lewis

  • Tris(2,2´-bipyridyl)ruthenium(II) chemiluminescence

    Bree A. Gorman;Paul S. Francis;Neil W. Barnett

  • Sequential injection analysis

    Claire E. Lenehan;Neil W. Barnett;Simon W. Lewis

  • Analytical applications of acidic potassium permanganate as a chemiluminescence reagent

    Benjamin J. Hindson;Neil W. Barnett

  • Acidic potassium permanganate as a chemiluminescence reagent--a review.

    Jacqui L. Adcock;Paul S. Francis;Neil W. Barnett

  • A potential-controlled switch on/off mechanism for selective excitation in mixed electrochemiluminescent systems

    Egan H. Doeven;Elizabeth M. Zammit;Gregory J. Barbante;Paul S. Francis

  • Determination of urea using high-performance liquid chromatography with fluorescence detection after automated derivatisation with xanthydrol.

    Shona Clark;Paul S. Francis;Xavier A. Conlan;Neil W. Barnett

  • The Tandem Photoredox Catalysis Mechanism of [Ir(ppy)2(dtb-bpy)]+ Enabling Access to Energy Demanding Organic Substrates.

    Timothy U Connell;Catherine L Fraser;Milena L Czyz;Zoe M Smith

  • Selective excitation of concomitant electrochemiluminophores: tuning emission color by electrode potential.

    Egan H. Doeven;Elizabeth M. Zammit;Gregory J. Barbante;Conor F. Hogan

  • Capillary electrophoresis for forensic drug analysis: A review

    Nicole Anastos;Neil W Barnett;Simon W Lewis

  • 4-Amino-1,8-naphthalimide-based anion receptors: employing the naphthalimide N–H moiety in the cooperative binding of dihydrogenphosphate

    Frederick M. Pfeffer;Alisha M. Buschgens;Neil W. Barnett;Thorfinnur Gunnlaugsson

  • Chemically induced phosphorescence from manganese(II) during the oxidation of various compounds by manganese(III), (IV) break and (VII) in acidic aqueous solutions

    Neil W Barnett;Benjamin J Hindson;Philip Jones;Trevor A Smith

  • Monitoring the total phenolic/antioxidant levels in wine using flow injection analysis with acidic potassium permanganate chemiluminescence detection

    Jason W. Costin;Neil W. Barnett;Simon W. Lewis;Duncan J. McGillivery

  • Determination of intracellular glutathione and glutathione disulfide using high performance liquid chromatography with acidic potassium permanganate chemiluminescence detection.

    Geoffrey P. McDermott;Paul S. Francis;Kayla J. Holt;Kristen L. Scott

  • Chemiluminescence detection of opium poppy (Papaver somniferum) alkaloids.

    Paul S. Francis;Jacqui L. Adcock;Jason W. Costin;Stuart D. Purcell

  • Advances in the use of acidic potassium permanganate as a chemiluminescence reagent: a review.

    Jacqui L. Adcock;Neil W. Barnett;Colin J. Barrow;Paul S. Francis

  • Determination of 5-hydroxytryptamine (serotonin) and related indoles by flow injection analysis with acidic potassium permanganate chemiluminescence detection

    Neil W Barnett;Benjamin J Hindson;Simon W Lewis

  • Sequential injection analysis: an alternative approach to process analytical chemistry

    Neil W Barnett;Claire E Lenehan;Simon W Lewis

  • Determination of codeine in process streams using flow-injection analysis with chemiluminescence detection

    Neil W. Barnett;Tim A. Bowser;Richard D. Gerardi;Brent Smith

  • Manganese(III) and manganese(IV) as chemiluminescence reagents: a review.

    Allyson J. Brown;Paul S. Francis;Jacqui L. Adcock;Kieran F. Lim

  • Inductively coupled plasma emission spectroscopy, part 1: methodology, instrumentation and performance

    P.W.J.M. Boumans;Neil W. Barnett

Frequent Co-Authors

Les Ebdon
Les Ebdon Plymouth University
Graeme R. Hanson
Graeme R. Hanson University of Queensland
Russell Keast
Russell Keast Deakin University
Paul J. Worsfold
Paul J. Worsfold Plymouth University
Colin J. Barrow
Colin J. Barrow Deakin University
Peter J. Scammells
Peter J. Scammells Monash University
Ming Zhou
Ming Zhou Northeast Normal University
Steve J. Hill
Steve J. Hill Plymouth University
Andrew J. Sinclair
Andrew J. Sinclair Deakin University
Takuya Tsuzuki
Takuya Tsuzuki Australian National University

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