Michael Seery
TitleCited byYear
A review on the visible light active titanium dioxide photocatalysts for environmental applications
M Pelaez, NT Nolan, SC Pillai, MK Seery, P Falaras, AG Kontos, ...
Applied Catalysis B: Environmental 125, 331-349, 2012
22512012
A highly efficient Ag-ZnO photocatalyst: synthesis, properties, and mechanism
R Georgekutty, MK Seery, SC Pillai
The Journal of Physical Chemistry C 112 (35), 13563-13570, 2008
6322008
Silver doped titanium dioxide nanomaterials for enhanced visible light photocatalysis
MK Seery, R George, P Floris, SC Pillai
Journal of photochemistry and Photobiology A: Chemistry 189 (2-3), 258-263, 2007
5672007
Synthesis of High-Temperature Stable Anatase TiO2 Photocatalyst
SC Pillai, P Periyat, R George, DE McCormack, MK Seery, H Hayden, ...
The Journal of Physical Chemistry C 111 (4), 1605-1611, 2007
2722007
Oxygen rich titania: A dopant free, high temperature stable, and visible‐light active anatase photocatalyst
V Etacheri, MK Seery, SJ Hinder, SC Pillai
Advanced Functional Materials 21 (19), 3744-3752, 2011
2332011
Highly Visible Light Active TiO2−xNx Heterojunction Photocatalysts
V Etacheri, MK Seery, SJ Hinder, SC Pillai
Chemistry of Materials 22 (13), 3843-3853, 2010
2182010
Spectroscopic Investigation of the Anatase-to-Rutile Transformation of Sol−Gel-Synthesized TiO2 Photocatalysts
NT Nolan, MK Seery, SC Pillai
The Journal of Physical Chemistry C 113 (36), 16151-16157, 2009
1742009
A Highly Efficient TiO2–xCx Nano-heterojunction Photocatalyst for Visible Light Induced Antibacterial Applications
V Etacheri, G Michlits, MK Seery, SJ Hinder, SC Pillai
ACS applied materials & interfaces 5 (5), 1663-1672, 2013
1602013
Effect of N-doping on the photocatalytic activity of sol–gel TiO2
NT Nolan, DW Synnott, MK Seery, SJ Hinder, A Van Wassenhoven, ...
Journal of hazardous materials 211, 88-94, 2012
1282012
Developing practical chemistry skills by means of student-driven problem based learning mini-projects
C McDonnell, C O’Connor, MK Seery
Chemistry Education Research and Practice 8 (2), 130-139, 2007
1212007
Flipped learning in higher education chemistry: emerging trends and potential directions
MK Seery
Chemistry Education Research and Practice 16 (4), 758-768, 2015
1122015
The implementation of pre‐lecture resources to reduce in‐class cognitive load: A case study for higher education chemistry
MK Seery, R Donnelly
British Journal of Educational Technology 43 (4), 667-677, 2012
822012
Crystallization and phase-transition characteristics of sol− gel-synthesized zinc titanates
NT Nolan, MK Seery, SC Pillai
Chemistry of Materials 23 (6), 1496-1504, 2011
762011
A systematic study of the effect of silver on the chelation of formic acid to a titanium precursor and the resulting effect on the anatase to rutile transformation of TiO2
NT Nolan, MK Seery, SJ Hinder, LF Healy, SC Pillai
The Journal of Physical Chemistry C 114 (30), 13026-13034, 2010
662010
Nanostructured Ti1-xSxO2-yNy Heterojunctions for Efficient Visible-Light-Induced Photocatalysis
V Etacheri, MK Seery, SJ Hinder, SC Pillai
Inorganic chemistry 51 (13), 7164-7173, 2012
582012
Photophysics of ion clusters formed between [Ru (bpy) 3] 2+ and the polyoxotungstate anion [S2W18O62] 4
MK Seery, L Guerin, RJ Forster, E Gicquel, V Hultgren, AM Bond, ...
The Journal of Physical Chemistry A 108 (36), 7399-7405, 2004
542004
The role of prior knowledge and student aptitude in undergraduate performance in chemistry: a correlation-prediction study
MK Seery
Chemistry Education Research and Practice 10 (3), 227-232, 2009
492009
Anti-bacterial activity of indoor-light activated photocatalysts
DW Synnott, MK Seery, SJ Hinder, G Michlits, SC Pillai
Applied Catalysis B: Environmental 130, 106-111, 2013
382013
Photophysics of ruthenium polypyridyl complexes formed with lacunary polyoxotungstates with iron addenda
MK Seery, N Fay, T McCormac, E Dempsey, RJ Forster, TE Keyes
Physical Chemistry Chemical Physics 7 (19), 3426-3433, 2005
362005
Novel microwave assisted synthesis of ZnS nanomaterials
DW Synnott, MK Seery, SJ Hinder, J Colreavy, SC Pillai
Nanotechnology 24 (4), 045704, 2013
292013
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