Single Mn Atom Doping in Chiral Sensitive Assembled Gold Clusters to Molecular Magnet

Authors
Swain, Deepak K.Mallik, GyanadeepSrivastava, PoojaKushwaha, Anoop K.Rajput, ParasmaniJha, Shambhu N.Lim, SeokminKim, SeungchulRath, Satchidananda
Issue Date
2021-04-27
Publisher
AMER CHEMICAL SOC
Citation
ACS NANO, v.15, no.4, pp.6289 - 6295
Abstract
Chiral stirred optical and magnetic properties, through the doping of assembled ultrasmall metal clusters (AMCs), are promising discernment to rivet the molecule-like quantum devices. Here, the single manganese (Mn) atom doping and assembly of the gold cluster (Au-8), leading to the chirality driven magnetism, has been achieved through a ligand-mediated growth. The X-ray absorption near edge structure and electron paramagnetic resonance studies corroborate the tetrahedral coordinated local structure of Mn dopant in the Au host. The optical and vibrational circular dichroic analysis affirms the modulation of chirality (negative to positive) in the presence of the Mn. A distinct ferromagnetic hysteresis loop at 300 K shows Mn ridden chiral sensitive ferromagnetism in contrary to the ligand influenced superparamagnetic undoped AMCs. The spin-polarized density functional theory level of calculations reveal the partial overlapping of spin-up and -down density of states in the doped AMCs, attributing to the ferromagnetic nature as like a molecular magnet suitable for the opto-spintronics application.
Keywords
CIRCULAR-DICHROISM; CIRCULAR-DICHROISM; gold cluster; molecular assembly; chiro-optical properties; magnetic properties; DFT calculation
ISSN
1936-0851
URI
https://pubs.kist.re.kr/handle/201004/117113
DOI
10.1021/acsnano.0c10260
Appears in Collections:
KIST Article > 2021
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