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Arunava Maity

Mitchell Institute

ORCID: 0000-0003-3978-8934

Publishes on Crystallization and Solubility Studies, X-ray Diffraction in Crystallography, Luminescence and Fluorescent Materials. 45 papers and 794 citations.

45Publications
794Total Citations

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Top publicationsby citations

Tuning of multiple luminescence outputs and white-light emission from a single gelator molecule through an ESIPT coupled AIEE process
Arunava Maity, Firoj Ali, Hridesh Agarwalla et al.|Chemical Communications|2014
Cited by 125

A unique example of an ESIPT coupled AIEE process, associated with a single molecule (1), is utilized for generating multiple luminescent colors (blue-green-white-yellow). The J-aggregated state of 1 forms a luminescent gel in THF and this luminescent property is retained even in the solid state.

Phenothiazinyl Boranes: A New Class of AIE Luminogens with Mega Stokes Shift, Mechanochromism, and Mechanoluminescence
C. Arivazhagan, Arunava Maity, K. Bakthavachalam et al.|Chemistry - A European Journal|2017
Cited by 79

Phenothiazines with a dimesityl boron moiety, a new class of aminoboranes with B-N linkage, were synthesized. These aminoboranes exhibited interesting photophysical behavior including aggregation-induced emission (AIE), mechanochromism (MC), mechanoluminescence (ML), and a mega Stokes shift (up to 312 nm in hexane). The solid-state emission of the aminoboranes could be switched reversibly by grinding-fuming processes. Furthermore, the phenothiazine derivative with a bromo and an arylborane group at 3- and 7-positions exhibited bright mechanoluminescence.

White-light-emitting lanthanide and lanthanide-iridium doped supramolecular gels: modular luminescence and stimuli-responsive behaviour
Tufan Singha Mahapatra, Harwinder Singh, Arunava Maity et al.|Journal of Materials Chemistry C|2018
Cited by 65

Lanthanide-based light-emitting supramolecular thermoreversible metallogels with tunable luminescence by controlling the stoichiometry of L-X/Eu<sup>III</sup>·L-X/Tb<sup>III</sup>·L-X or L-X/Eu<sup>III</sup>·L-X/[Ir<sup>III</sup>(F<sub>2</sub>ppy)<sub>2</sub>(biimid)]PF<sub>6</sub>.

Counteranion Driven Homochiral Assembly of a Cationic <i>C</i><sub>3</sub>-Symmetric Gelator through Ion-Pair Assisted Hydrogen Bond
Arunava Maity, Monalisa Gangopadhyay, Arghya Basu et al.|Journal of the American Chemical Society|2016
Cited by 54

The helical handedness in achiral self-assemblies is mostly complex due to spontaneous symmetry breaking or kinetically controlled random assembly formation. Here an attempt has been made to address this issue through chiral anion exchange. A new class of cationic achiral C3-symmetric gelator devoid of any conventional gelation assisting functional units is found to form both right- and left-handed helical structures. A chiral counteranion exchange-assisted approach is successfully introduced to control the chirality sign and thereby to obtain preferred homochiral assemblies. Formation of anion-assisted chiral assembly was confirmed by circular dichroism (CD) spectroscopy, microscopic images, and crystal structure. The X-ray crystal structure reveals the construction of helical assemblies with opposite handedness for (+)- and (-)-chiral anion reformed gelators. The appropriate counteranion driven ion-pair-assisted hydrogen-bonding interactions are found responsible for the helical bias control in this C3-symmetric gelator.