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Saritha Nellutla

Researcher at Florida State University

Publications -  37
Citations -  1772

Saritha Nellutla is an academic researcher from Florida State University. The author has contributed to research in topics: Electron paramagnetic resonance & Magnetization. The author has an hindex of 19, co-authored 37 publications receiving 1688 citations. Previous affiliations of Saritha Nellutla include Bridgewater State University & North Carolina State University.

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Journal ArticleDOI

Structure, Electrochemistry, and Magnetism of the Iron(III)-Substituted Keggin Dimer, [Fe6(OH)3(A-α-GeW9O34(OH)3)2]11-

TL;DR: Remarkable efficiency of 1 in the electrocatalytic reduction of nitrite, nitric oxide, and nitrate is demonstrated and EPR studies confirm that the ground state is indeed diamagnetic, since the EPR signal intensity steadily decreases without any line broadening as the temperature is lowered and becomes unobservable below about 50 K.
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Sandwich-type germanotungstates: structure and magnetic properties of the dimeric polyoxoanions [M4(H2O)2(GeW9O34)2]12 - (M = Mn2+, Cu2+, Zn2+, Cd2+).

TL;DR: X-ray single-crystal analyses of the novel dimeric germanotungstates and W-NMR studies of the diamagnetic Zn and Cd derivatives indicate that the solid-state polyoxoanion structures are preserved in solution.
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Structure and Magnetism of the Tetra-Copper(II)-Substituted Heteropolyanion [Cu4K2(H2O)8(α-AsW9O33)2]8-†

TL;DR: In this article, the authors synthesize and characterize a novel heteropolyanion [Cu4K2(H2O)8(α-AsW9O33)2]8- (1) by IR spectroscopy, elemental analysis, and magnetic studies.
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Magnetism, Electron Paramagnetic Resonance, Electrochemistry, and Mass Spectrometry of the Pentacopper(II)-Substituted Tungstosilicate [Cu5(OH)4(H2O)2(A-α-SiW9O33)2]10-, A Model Five-Spin Frustrated Cluster

TL;DR: In this paper, a model system for a five-spin, electronically coupled, spin-frustrated system was proposed, where the unpaired electron spin density is localized on the spin-fused apical apical Cu2+ ion with gzz = 2.4073 ± 0.0005, gyy= 2.0672 ± 0.0005 and Azz = −340 ± 20 MHz (−0.0113 cm-1).
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Dzyaloshinsky-Moriya anisotropy in the spin-1/2 kagome compound ZnCu3(OH)6Cl2.

TL;DR: The Dzyaloshinsky-Moriya interaction is determined to be the dominant magnetic anisotropy term in the kagome spin-1/2 compound ZnCu3(OH)6Cl2, based on the analysis of the high-temperature electron spin resonance (ESR) spectra.