Core-size-dependent catalytic properties of bimetallic Au/Ag core–shell nanoparticles KK Haldar, S Kundu, A Patra ACS applied materials & interfaces 6 (24), 21946-21953, 2014 | 206 | 2014 |
Enhancement of Upconversion Emission of LaPO4:Er@Yb Core−Shell Nanoparticles/Nanorods P Ghosh, J Oliva, ED Rosa, KK Haldar, D Solis, A Patra The Journal of Physical Chemistry C 112 (26), 9650-9658, 2008 | 180 | 2008 |
DNA origami directed Au nanostar dimers for single molecule surface enhanced Raman scattering S Tanwar, KK Haldar, T Sen Journal of the American Chemical Society, 2017 | 161 | 2017 |
Au nanoparticle-based surface energy transfer probe for conformational changes of BSA protein T Sen, KK Haldar, A Patra The Journal of Physical Chemistry C 112 (46), 17945-17951, 2008 | 146 | 2008 |
Au@ ZnO core− shell nanoparticles are efficient energy acceptors with organic dye donors KK Haldar, T Sen, A Patra The Journal of Physical Chemistry C 112 (31), 11650-11656, 2008 | 131 | 2008 |
Hybrid colloidal Au-CdSe pentapod heterostructures synthesis and their photocatalytic properties KK Haldar, G Sinha, J Lahtinen, A Patra ACS applied materials & interfaces 4 (11), 6266-6272, 2012 | 117 | 2012 |
Metal conjugated semiconductor hybrid nanoparticle-based fluorescence resonance energy transfer KK Haldar, T Sen, A Patra The Journal of Physical Chemistry C 114 (11), 4869-4874, 2010 | 93 | 2010 |
Nonlinear optical switching and enhanced nonlinear optical response of Au–CdSe heteronanostructures V Sreeramulu, KK Haldar, A Patra, DN Rao The Journal of Physical Chemistry C 118 (51), 30333-30341, 2014 | 91 | 2014 |
Nonlinear optical switching and optical limiting in colloidal CdSe quantum dots investigated by nanosecond Z-scan measurement NRD Sreeramulu Valligatla ,Krishna Kanta Haldar , Amitava Patra Optics & Laser Technology, 2016 | 85 | 2016 |
Size dependent resonance energy transfer between semiconductor quantum dots and dye using FRET and kinetic model S Sadhu, KK Haldar, A Patra The Journal of Physical Chemistry C 114 (9), 3891-3897, 2010 | 74 | 2010 |
Formation of heteroepitaxy in different shapes of Au–CdSe metal–semiconductor hybrid nanostructures KK Haldar, N Pradhan, A Patra Small 9 (20), 3424-3432, 2013 | 55 | 2013 |
Graphitic Carbon Nitride Composites with MoO3-Decorated Co3O4 Nanorods as Catalysts for Oxygen and Hydrogen Evolution I Ahmed, R Biswas, RA Patil, KK Halder, H Singh, B Banerjee, B Kumar, ... ACS Applied Nano Materials 4 (11), 12672-12681, 2021 | 53 | 2021 |
Fluorescence enhancement and quenching of Eu3+ ions by Au–ZnO core-shell and Au nanoparticles KK Haldar, A Patra Applied Physics Letters 95 (6), 2009 | 47 | 2009 |
Interfacial Engineering of CuCo2S4/g-C3N4 Hybrid Nanorods for Efficient Oxygen Evolution Reaction R Biswas, P Thakur, G Kaur, S Som, M Saha, V Jhajhria, H Singh, ... Inorganic Chemistry 60 (16), 12355-12366, 2021 | 45 | 2021 |
Highly sensitive detection and removal of mercury ion using a multimodal nanosensor S Satapathia, V Kumara, MK Chinia, R Bera, KK Haldar, A Patra Nano-Structures & Nano-Objects 16, 126, 2018 | 42 | 2018 |
Photophysical properties of Au‐CdTe hybrid nanostructures of varying sizes and shapes KK Haldar, T Sen, S Mandal, A Patra ChemPhysChem 13 (17), 3989-3996, 2012 | 40 | 2012 |
Novel Green Approach for Fabrication of Ag2CrO4/TiO2/Au/r-GO Hybrid Biofilm for Visible Light-Driven Photocatalytic Performance R Biswas, S Mete, M Mandal, B Banerjee, H Singh, I Ahmed, KK Haldar The Journal of Physical Chemistry C 124 (5), 3373-3388, 2020 | 38 | 2020 |
Rational design of marigold shape composite Ni3V2O8 flower: a promising catalyst for oxygen evolution reaction YRMTS Krishna kanta Haldar, Rathindranath Biswas, Avinava Kundu, Monochura ... New Journal of Chemistry, 2020 | 36 | 2020 |
Green approach for the fabrication of Au/ZnO nanoflowers: A catalytic aspect R Biswas, B Banerjee, M Saha, I Ahmed, S Mete, RA Patil, YR Ma, ... The Journal of Physical Chemistry C 125 (12), 6619-6631, 2021 | 33 | 2021 |
Efficient resonance energy transfer from dye to Au@ SnO2 core–shell nanoparticles KK Haldar, A Patra Chemical Physics Letters 462 (1-3), 88-91, 2008 | 31 | 2008 |