Folgen
Rajeshkumar Hyam
Rajeshkumar Hyam
Physics Department, Goa University
Bestätigte E-Mail-Adresse bei unigoa.ac.in
Titel
Zitiert von
Zitiert von
Jahr
Effect of particle size distribution and zeta potential on the electrophoretic deposition of boron films
RS Hyam, KM Subhedar, SH Pawar
Colloids and Surfaces A: Physicochemical and Engineering Aspects 315 (1-3 …, 2008
342008
Effect of annealing environments on self-organized TiO2 nanotubes for efficient photocatalytic applications
RS Hyam, J Lee, E Cho, J Khim, H Lee
Journal of nanoscience and nanotechnology 12 (12), 8908-8912, 2012
272012
Effects of titanium foil thickness on TiO 2 nanostructures synthesized by anodization
RS Hyam, D Choi
RSC advances 3 (19), 7057-7063, 2013
242013
Room temperature synthesis of rutile TiO2 hierarchical nanoneedle flower morphology for dye sensitized solar cell
RS Hyam, RK Bhosale, W Lee, SH Han, B Hannoyer, SB Ogale
Journal of nanoscience and nanotechnology 10 (9), 5894-5898, 2010
242010
Plasmonic–Photonic Interference Coupling in Submicrometer Amorphous TiO2–Ag Nanoarchitectures
RS Hyam, J Jeon, S Chae, YT Park, SJ Kim, B Lee, C Lee, D Choi
Langmuir 33 (43), 12398-12403, 2017
132017
Synthesis of copper hydroxide and oxide nanostructures via anodization technique for efficient photocatalytic application
RS Hyam, J Lee, E Cho, J Khim, H Lee
Journal of Nanoscience and Nanotechnology 12 (11), 8396-8400, 2012
132012
Chlorate ion mediated rutile to anatase reverse phase transformation in the TiO2 nanosystem
R Bhosale, R Hyam, P Dhanya, S Ogale
Dalton Transactions 40, 11374-11377, 2011
122011
Synthesis of MgB2 films by diffusion of magnesium into electrophoretically deposited boron films
RS Hyam, KM Subhedar, SH Pawar
Applied Surface Science 253 ((3)), 1540-1543, 2006
122006
Suspension stability studies for the electrophoretic deposition of boron films
RS Hyam, KM Subhedar, SH Pawar
Colloids and Surfaces A: Physicochemical and Engineering Aspects 297 (1-3 …, 2007
102007
Growth mechanism of MgB2 films in electrocrystallization process
KM Subhedar, RS Hyam, V Ganesan, SH Pawar
Physica C: Superconductivity and its Applications 449 ((1)), 73-79, 2006
72006
Processing of superconducting MgB2 films by electrocrystallization technique
KM Subhedar, RS Hyam, SH Pawar
Physica C: Superconductivity and its Applications , pp. 434 ((1)), 31-38, 2006
52006
Substrate dependent growth studies of MgB2 films by electrocrystallization
KM Subhedar, RS Hyam, MB Kadam, RS Kalubarme, SH Pawar
Physica C: Superconductivity and its Applications ) , pp. 450 (1-2), 66-70, 2006
52006
Formation of MgB2 at ambient temperature with an electrochemical process: A plausible mechanism
AB Jadhav, KM Subhedar, RS Hyam, SH Talaptra
Superconductor Science and Technology 18 ((6)), L29-L30, 2005
52005
Enhanced electrical and thermoelectric power properties of BaWO4/CaWO4 nanocomposites
PN Patil, U Subramanian, RS Hyam
Applied Physics A 127 (9), 731, 2021
32021
Au nanoparticles-coated TiO2 SERS active substrate studies-based on plasmonic photonic interference coupling
MS Antony, RS Hyam
Materials Science and Engineering: B 298, 116885, 2023
22023
Au nanoparticles decorated titanium dioxide nanotube arrays with enhanced photocatalytic dye degradation under ultraviolet and sunlight irradiation
RS Hyam
Results in Surfaces and Interfaces 12, 100140, 2023
22023
High-performance blue light photodetector based on PANI/CdS heterojunction
DI Halge, VN Narwade, NMS Kaawash, PM Khanzode, SJ Shaikh, ...
Materials Science in Semiconductor Processing 171, 108020, 2024
12024
One step electrochemical process for the synthesis of pure rutile titanium dioxide nanoneedles
RS Hyam, RK Bhosale, SB Ogale
US Patent App. 13/144,601, 2011
12011
One step electrochemical process for the synthesis of pure rutile titanium dioxide nanoneedles
RS Hyam, RK Bhosale, SB Ogale
US Patent App. 13/144,601, 2011
12011
Au nanoparticles-coated TiO sub (2) SERS active substrate studies-based on plasmonic photonic interference coupling
AM Steffi, RS Hyam
Elsevier, 2023
2023
Das System kann den Vorgang jetzt nicht ausführen. Versuchen Sie es später erneut.
Artikel 1–20