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MANISHA CHAKRABORTY
MANISHA CHAKRABORTY
Research Scholar, Department of Physics, Visva-Bharati University
在 visva-bharati.ac.in 的电子邮件经过验证
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引用次数
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Insights into the thermal decomposition of organometallic compound ferrocene carboxaldehyde as precursor for hematite nanoparticles synthesis
M Chakraborty, A Dey, A Bhattacharjee
Zeitschrift für Physikalische Chemie 236 (9), 1137-1161, 2022
62022
Solid-state reaction of ferrocene controlled by co-precursor and reaction atmosphere leading to hematite and cohenite nanomaterials: a reaction kinetic study
S Kundu, M Chakraborty, A Bhattacharjee
The Journal of Physical Chemistry C 127 (37), 18397-18408, 2023
52023
Thermal transformation of 1-(ferrocenyl) ethanol to iron oxide nanoparticles based on reaction atmosphere: analysis of the decomposition reaction using non-isothermal …
M Chakraborty, S Kundu, B Das, A Bhattacharjee
Journal of Thermal Analysis and Calorimetry 148 (17), 8915-8931, 2023
42023
Correction to “Solid-State Reaction of Ferrocene Controlled by Co-Precursor and Reaction Atmosphere Leading to Hematite and Cementite Nanomaterials: A Reaction Kinetic Study”
S Kundu, M Chakraborty, A Bhattacharjee
The Journal of Physical Chemistry C 127 (50), 24487-24488, 2023
12023
Insights into a co-precursor driven solid-state thermal reaction of ferrocene carboxaldehyde leading to hematite nanomaterial: a reaction kinetic study
M Chakraborty, S Kundu, A Bhattacharjee
RSC advances 13 (50), 34972-34986, 2023
12023
Modulation of Solid-state Thermal Reaction of Iron (III) Citrate by a Co-precursor Studied using Thermogravimetry: Evaluation of Kinetic and Thermodynamic Parameters and …
S Kundu, M Chakraborty, A Bhattacharjee
Current Physical Chemistry 14 (2), 143-163, 2024
2024
This journal is© The Royal Society of Chemistry 2023
M Chakraborty, S Kundu, A Bhattacharjee
order 1, 3, 0
Thermal Synthesis of Hematite Nanoparticles using Ferrocene Carboxaldehyde: Structure, Morphology and Reaction Kinetic Studies
M Chakraborty, A Bhattacharjee
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