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Arnab Pal
OBJECTIVE
Motivated to work in an environment that gives me ample opportunities to harness knowledge and enhance it further. I want to utilize my knowledge, experience, and skills to contribute significantly to the development of scientific research activities, teaching, and growth of the institution and society.

Selected research works

Metal-organic frameworks as thermocatalysts for hydrogen peroxide generation and environmental antibacterial applications, Sci. Adv., sciadv.ads4711 (2024) (Ranking Q1, Impact factor: 11.1)

Construction of Triboelectric Series and Chirality Detection of Amino Acids Using Triboelectric Nanogenerator, Adv. Sci., 2307266 (2023) (Ranking Q1, Impact factor: 15.1)

Thermosensitive Smart Robotic Self-powered Sensor for Material Identification,
( Device, 100421June 21, 2024, Cell Press)

Microfluidic nanodevices for drug sensing and screening applications, Biosens. Bioelectron., 219, 114783 (2023). (Ranking Q1, Impact factor: 12.6)

Shape‐Tunable BaTiO3 Crystals Presenting Facet‐Dependent Optical and Piezoelectric Properties, Small, 2205920 (2022). (Ranking Q1, Impact factor: 13.3)

A Highly Sensitive Mercury Ion Sensor Based on Solid-Liquid Contact Electrification, ECS J. Solid State Sci. Technol., 9, 115029 (2020). (Ranking Q3, Impact factor: 2.2)
Other works

A Self-powered Multifunctional Dressing for Active Infection Prevention and Accelerated Wound Healing, Sci. Adv. 9, eadc8758 (2023). (Ranking Q1, Impact factor: 13.6)

Oxygen-producing composite dressing activated by photothermal and piezoelectric effects for accelerated healing of infected wounds, Chem. Eng. J., 476, 146744 (2023). (Ranking Q1, Impact factor: 15.1)

Triboelectric Nanosensor Integrated with Robotic Platform for Self-Powered Detection of Chemical Analytes, ACS Nano 17, 3, 2689–2701 (2023), (Ranking Q1, Impact factor: 17.1)

Bioinspired Shark Skin-based Liquid Metal Triboelectric Nanogenerator for Self-powered Gait Analysis and Long-term Rehabilitation Monitoring, Nano Energy, 104, 107852 (2022). (Ranking Q1, Impact factor: 17.6)

Regulation of cell differentiation via synergistic self-powered stimulation and degradation behavior of a biodegradable composite piezoelectric scaffold for cartilage tissue, Nano Energy, 90, 106545 (2021). (Ranking Q1, Impact factor: 17.6)
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Truly Top-Notch
The highest education is that which doesn’t merely give us information but makes our life in harmony with all existence’

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