Thayalan Rajeshkumar

2012-2017 Indian Institute of Technology Bombay, India 
"Thayalan Rajeshkumar"
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Kokkala P, Rajeshkumar T, Mpakali A, et al. (2021) A Carbodiimide-Mediated P-C Bond-Forming Reaction: Mild Amidoalkylation of -Nucleophiles by Boc-Aminals. Organic Letters. 23: 1726-1730
Metavarayuth K, Ejegbavwo OA, McCarver G, et al. (2020) Direct Identification of Mixed-Metal Centers in Metal-Organic Frameworks: Cu(BTC) Transmetallated with Rh Ions. The Journal of Physical Chemistry Letters
Shakya DM, Ejegbavwo OA, Rajeshkumar T, et al. (2019) Selective Catalytic Chemistry at Rhodium(II) Nodes in Bimetallic Metal-Organic Frameworks. Angewandte Chemie (International Ed. in English)
Gupta SK, Shanmugan S, Rajeshkumar T, et al. (2019) A single-ion single-electron cerrous magnet. Dalton Transactions (Cambridge, England : 2003)
Rajeshkumar T, Jose R, Remya PR, et al. (2019) Theoretical Studies on Trinuclear {MnGd} and Tetranuclear {MnGd} Clusters: Magnetic Exchange, Mechanism of Magnetic Coupling, Magnetocaloric Effect, and Magneto-Structural Correlations. Inorganic Chemistry. 58: 11927-11940
Sarkar A, Velmurugan G, Rajeshkumar T, et al. (2018) Deciphering the origin of invariance in magnetic anisotropy in {FeS} complexes: a theoretical perspective. Dalton Transactions (Cambridge, England : 2003)
Singh MK, Rajeshkumar T, Kumar R, et al. (2018) Role of (1,3) {Cu-Cu} Interaction on the Magneto-Caloric Effect of Trinuclear {CuII-GdIII-CuII} Complexes: Combined DFT and Experimental Studies. Inorganic Chemistry
Gupta SK, Rajeshkumar T, Rajaraman G, et al. (2017) Is a strong axial crystal-field the only essential condition for a large magnetic anisotropy barrier? The case of non-Kramers Ho(iii) versus Tb(iii ). Dalton Transactions (Cambridge, England : 2003)
Gupta SK, Rajeshkumar T, Rajaraman G, et al. (2016) An air-stable Dy(iii) single-ion magnet with high anisotropy barrier and blocking temperature. Chemical Science. 7: 5181-5191
Gupta SK, Rajeshkumar T, Rajaraman G, et al. (2016) An unprecedented zero field neodymium(iii) single-ion magnet based on a phosphonic diamide. Chemical Communications (Cambridge, England)
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