Browsing by Author "Kumar, A."
Now showing items 1-5 of 5
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Cd-free Cu-doped ZnInS/ZnS Core/Shell nanocrystals: Controlled synthesis and photophysical properties
Kaur, Manpreet; Sharma, Ashma; Olutaş, Murat; Erdem, Onur; Kumar, A.; Sharma, Manoj; Demir, Hilmi Volkan (SpringerOpen, 2018)Here, we report efficient composition-tunable Cu-doped ZnInS/ZnS (core and core/shell) colloidal nanocrystals (CNCs) synthesized by using a colloidal non-injection method. The initial precursors for the synthesis were used ... -
Development of CuAg/Cu2O nanoparticles on carbon nitride surface for methanol oxidation and selective conversion of carbon dioxide into formate
Nazir, Roshan; Kumar, A.; Saad, M. A. S.; Ali, S. (Elsevier, 2020)Herein we report a catalyst consisting of CuAg/Cu2O nanoparticles (NPs), synthesized on the two-dimensional carbon nitride (Csingle bondN) surface via galvanic exchange route for electrocatalytic methanol oxidation and ... -
Nanosheet synthesis of mixed Co3O4/CuO via combustion method for methanol oxidation and carbon dioxide reduction
Nazir, Roshan; Khalfani, A.; Abdelfattah, O.; Kumar, A.; Saad, M. A. S.; Ali, S. (American Chemical Society, 2020)This paper represents a study of mixed Co3O4/CuO nanosheet (NS) synthesis via solution combustion synthesis for oxidation of methanol and carbon dioxide (CO2) conversion. The mixed oxide NS of Co3O4/CuO is a hybrid structure ... -
Shouji: a fast and efficient pre-alignment filter for sequence alignment
Alser, Mohammed; Hassan, H.; Kumar, A.; Mutlu, Onur; Alkan, Can (Oxford University Press, 2019)The ability to generate massive amounts of sequencing data continues to overwhelm the processing capability of existing algorithms and compute infrastructures. In this work, we explore the use of hardware/software co-design ... -
Synthesis of hydroxide nanoparticles of Co/Cu on carbon nitride surface via galvanic exchange method for electrocatalytic CO2 reduction into formate
Nazir, Roshan; Kumar, A.; Saad, M. A. S.; Ashok, A. (Elsevier, 2020-04-06)Herein we report Co and Cu based metal hydroxides (Co(OH)2/Cu(OH)2) on carbon nitride (C3N4) surface via replacement of Co nanoparticles (NPs) through galvanic exchange method for electrocatalytic carbon dioxide reduction. ...