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Number of items: 8.

Journal Article

Jenjeti, Ramesh Naidu and Kumar, Rajat and Sampath, S (2019) Two-dimensional, few-layer NiPS3 for flexible humidity sensor with high selectivity. In: JOURNAL OF MATERIALS CHEMISTRY A, 7 (24). pp. 14545-14551.

Kumar, Rajat and Jenjeti, Ramesh Naidu and Austeria, Muthu P and Sampath, S (2019) Bulk and few-layer MnPS3: a new candidate for field effect transistors and UV photodetectors. In: JOURNAL OF MATERIALS CHEMISTRY C, 7 (2). pp. 324-329.

Jenjeti, Ramesh Naidu and Kumar, Rajat and Austeria, Muthu P and Sampath, S (2018) Field Effect Transistor Based on Layered NiPS3. In: SCIENTIFIC REPORTS, 8 .

Sellam, A and Jenjeti, Ramesh Naidu and Sampath, S (2018) Ultrahigh-Rate Supercapacitors Based on 2-Dimensional, 1T MoS2xSe2(1-x) for AC Line-Filtering Applications. In: JOURNAL OF PHYSICAL CHEMISTRY C, 122 (25, SI). pp. 14186-14194.

Singh, Dheeraj Kumar and Jenjeti, Ramesh Naidu and Sampath, Srinivasan and Eswaramoorthy, Muthusamy (2017) Two in one: N-doped tubular carbon nanostructure as an efficient metal-free dual electrocatalyst for hydrogen evolution and oxygen reduction reactions. In: JOURNAL OF MATERIALS CHEMISTRY A, 5 (13). pp. 6025-6031.

Jenjeti, Ramesh Naidu and Austeria, Muthu P and Sampath, Srinivasan (2016) Alternate to Molybdenum Disulfide: A 2D, Few-Layer Transition-Metal Thiophosphate and Its Hydrogen Evolution Reaction Activity over a Wide pH Range. In: CHEMELECTROCHEM, 3 (9). pp. 1392-1399.

Urumese, Ancila and Jenjeti, Ramesh Naidu and Sampath, S and Jagirdar, Balaji R (2016) Colloidal europium nanoparticles via a solvated metal atom dispersion approach and their surface enhanced Raman scattering studies. In: JOURNAL OF COLLOID AND INTERFACE SCIENCE, 476 . pp. 177-183.

Kiran, Vankayala and Mukherjee, Debdyuti and Jenjeti, Ramesh Naidu and Sampath, Srinivasan (2014) Active guests in the MoS2/MoSe2 host lattice: efficient hydrogen evolution using few-layer alloys of MoS2(1-x)Se2x. In: NANOSCALE, 6 (21). pp. 12856-12863.

This list was generated on Fri Apr 26 22:33:45 2024 IST.