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Chemistry (Weinheim an Der Bergstrasse, Germany)|November 29, 2014
Can CH⋅⋅⋅π interactions be used to design single-chain magnets?Mukesh Kumar Singh, Gopalan Rajaraman
ACS Omega|December 13, 2021
Strategies to Design Single-Molecule Toroics Using Triangular {Ln3} MotifsKuduva R Vignesh, Gopalan Rajaraman
Journal of the American Chemical Society|May 3, 2025
Leveraging Quantum Chemistry and Machine Learning for the Design of Low-Valent Transition Metal Catalysts in Nitrogen to Ammonia ConversionChandrasekhar Nettem, Ankit Mondal, Gopalan Rajaraman
Chemical Communications (Cambridge, England)|February 15, 2023
Strategies to quench quantum tunneling of magnetization in lanthanide single molecule magnetsAbinash Swain, Tanu Sharma, Gopalan Rajaraman
Chemical Communications (Cambridge, England)|December 2, 2021
A six-coordinate high-spin FeIVO species of cucurbit[5]uril: a highly potent catalyst for C-H hydroxylation of methane, if synthesisedRavi Kumar, Mahesh Sundararajan, Gopalan Rajaraman
Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry|November 4, 2022
A Theoretical Perspective to Decipher the Origin of High Hydrogen Storage Capacity in Mn(II) Metal-Organic FrameworkReshma Jose, Sourav Pal, Gopalan Rajaraman
Chemistry (Weinheim an Der Bergstrasse, Germany)|August 25, 2022
Analysis of the Magnetic Coupling in a Mn(II)-U(V)-Mn(II) Single Molecule MagnetSourav Dey, Gopalan Rajaraman, Hélène Bolvin
Chemistry (Weinheim an Der Bergstrasse, Germany)|July 31, 2020
Role of Coordination Number and Geometry in Controlling the Magnetic Anisotropy in FeII , CoII , and NiII Single-Ion MagnetsArup Sarkar, Sourav Dey, Gopalan Rajaraman
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