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Junqiao LEE
Junqiao LEE
Curtin Institute for Functional Molecules and Interfaces (CIFMI), School of Molecular and Life
在 curtin.edu.au 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
Comparative study of screen printed electrodes for ammonia gas sensing in ionic liquids
K Murugappan, J Lee, DS Silvester
Electrochemistry Communications 13 (12), 1435-1438, 2011
672011
Evidence for a surface confined ion-to-electron transduction reaction in solid-contact ion-selective electrodes based on poly (3-octylthiophene)
JP Veder, R De Marco, K Patel, P Si, E Grygolowicz-Pawlak, M James, ...
Analytical chemistry 85 (21), 10495-10502, 2013
642013
Oxygen reduction voltammetry on platinum macrodisk and screen-printed electrodes in ionic liquids: Reaction of the electrogenerated superoxide species with compounds used in …
J Lee, K Murugappan, DWM Arrigan, DS Silvester
Electrochimica Acta 101, 158-168, 2013
582013
Detection of 2, 4, 6-trinitrotoluene using a miniaturized, disposable electrochemical sensor with an ionic liquid gel-polymer electrolyte film
HA Yu, J Lee, SW Lewis, DS Silvester
Analytical chemistry 89 (8), 4729-4736, 2017
532017
Mechanical polishing as an improved surface treatment for platinum screen-printed electrodes
DSS Junqiao Lee, Damien WM Arrigan
Sensing and Bio-Sensing Research, 2016
492016
Towards improving the robustness of electrochemical gas sensors: impact of PMMA addition on the sensing of oxygen in an ionic liquid
J Lee, G Du Plessis, DWM Arrigan, DS Silvester
Analytical Methods 7 (17), 7327-7335, 2015
392015
Achievement of Prolonged Oxygen Detection in Room-Temperature Ionic Liquids on Mechanically Polished Platinum Screen-Printed Electrodes
DSS Junqiao Lee, Damien WM Arrigan
Analytical chemistry 88 (10), 5104-5111, 2016
322016
Electro-Reduction of 2, 4, 6-Trinitrotoluene in Room Temperature Ionic Liquids: Evidence of an EC2 Mechanism
DSS Colin Kang, Junqiao Lee
The Journal of Physical Chemistry C, 2016
292016
Diverse morphologies of zinc oxide nanoparticles and their electrocatalytic performance in hydrogen production
VM Sofianos, J Lee, DS Silvester, PK Samanta, M Paskevicius, ...
Journal of Energy Chemistry 56, 162-170, 2021
272021
A lithium iron phosphate reference electrode for ionic liquid electrolytes
J Wandt, J Lee, DWM Arrigan, DS Silvester
Electrochemistry Communications 93, 148-151, 2018
272018
Low-Cost Microarray Thin-Film Electrodes with Ionic Liquid Gel-Polymer Electrolytes for Miniaturised Oxygen Sensing
J Lee, DS Silvester
Analyst, 2016
252016
Thin films of poly (vinylidene fluoride-co-hexafluoropropylene)-ionic liquid mixtures as amperometric gas sensing materials for oxygen and ammonia
J Lee, G Hussain, N López-Salas, DR MacFarlane, DS Silvester
Analyst 145 (5), 1915-1924, 2020
222020
Screen-printed graphite electrodes as low-cost devices for oxygen gas detection in room-temperature ionic liquids
J Lee, G Hussain, CE Banks, DS Silvester
Sensors 17 (12), 2734, 2017
222017
Zinc oxide nanoparticles as antifouling materials for the electrochemical detection of methylparaben
S Javaid, J Lee, MV Sofianos, Z Douglas‐Moore, DWM Arrigan, ...
ChemElectroChem 8 (1), 187-194, 2021
212021
Effect of ionic liquid structure on the oxygen reduction reaction under humidified conditions
S Doblinger, J Lee, DS Silvester
The Journal of Physical Chemistry C 123 (17), 10727-10737, 2019
172019
Molten metal closo-borate solvates
KT Møller, M Paskevicius, JG Andreasen, J Lee, N Chen-Tan, ...
Chemical Communications 55 (23), 3410-3413, 2019
152019
Macroporous platinum electrodes for hydrogen oxidation in ionic liquids
G Hussain, MV Sofianos, J Lee, C Gibson, CE Buckley, DS Silvester
Electrochemistry Communications 86, 43-47, 2018
142018
Formation of 3-Dimensional Gold, Copper and Palladium Microelectrode Arrays for Enhanced Electrochemical Sensing Applications
CE Hay, J Lee, DS Silvester
Nanomaterials 9 (8), 1170, 2019
132019
A methodology to detect explosive residues using a gelled ionic liquid based field-deployable electrochemical device
CE Hay, J Lee, DS Silvester
Journal of Electroanalytical Chemistry 872, 114046, 2020
122020
Detection of sulfur dioxide at low parts-per-million concentrations using low-cost planar electrodes with ionic liquid electrolytes
S Doblinger, J Lee, Z Gurnah, DS Silvester
Analytica Chimica Acta 1124, 156-165, 2020
112020
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