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International Journal of Advance in Molecular Engineering Cover

International Journal of Advance in Molecular Engineering

E-ISSN: 3049-219X | Peer-Reviewed Journal (Refereed Journal) | Hybrid Open Access

About the Journal

International Journal of Advance in Molecular Engineering International Journal of Advance in Molecular Engineering: is a peer-reviewed Online journal launched in 2023 that is dedicated to publishing only good quality research works; it accepts both original research articles and review papers. Both experimental and theoretical papers falling under the scope of the journal are welcome.

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Journal Information

Title: International Journal of Advance in Molecular Engineering
Abbreviation: ijame
Issues Per Year: 2 Issues
E-ISSN: 3049-219X
Publisher: STM Journals, An imprint of Consortium e-Learning Network Pvt. Ltd.
DOI: 10.37591/ijame
Starting Year: 2023
Subject: Advance in Molecular Engineering
Publication Format: Hybrid Open Access
Language: English
Copyright Policy: CC BY-NC-ND
Type: Peer-reviewed Journal (Refereed Journal)

Address:

STM Journals, An imprint of Consortium e-Learning Network Pvt. Ltd. A-118, 1st Floor, Sector-63, Noida, U.P. India, Pin - 201301

Editorial Board

View Full Editorial Board

ijame maintains an Editorial Board of practicing researchers from around the world, to ensure manuscripts are handled by editors who are experts in the field of study.

Editor in Chief

Editor

Dr. Prof. K Anand Kishore, Professor

National Institute of Technology, Warangal, Telangana, India, 121002

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Latest Articles

Ahead of Print

Effect of Nanoclay Loading on Physical and Mechanical Properties of Epoxy Composites

The effects of multilayer silicate loading on hardness, tensile, and impact properties were examined by developing epoxy–nanoclay composites with 0–5 wt% nanoclay. A desirable compromise between reduced void content and higher Shore D hardness was reached with an ideal nanoclay loading of 3 wt%, which reflected improved load transfer and increased matrix stiffness as a result of limited polymer chain mobility.

Epoxy-nanoclay composites, hardness, tensile properties, impact strength

Polymer Electrolytes for Flexible Energy Storage

The research explores polymer electrolytes as promising materials for flexible energy storage applications, driven by the growing demand for wearable and portable electronics. Polymer electrolytes, including solid, gel, and composite types, offer key advantages such as mechanical flexibility, lightweight design, and improved safety over traditional liquid electrolytes.

Polymer electrolytes, flexible energy storage, solid polymer, electrolytes, gel polymer electrolytes, lithium-ion batteries, supercapacitors, ionic conductivity, mechanical flexibility

Synthesis and Spectral Characterization of Complexes Tin(II) With 4-Nitrophenol

Tin(II)4-nitrophenoxide complexes with the formulas SnCl(OC₆H₄NO₂-4) and Sn(OC₆H₄NO₂-4)₂ were prepared through the reaction of stannous chloride (SnCl₂) with 4-nitrophenol (HOC₆H₄NO₂-4) in 1:1 and 1:2 molar ratios, respectively.

Tin(II) aryloxides, 4-nitrophenol, reactivity, NMR, IR spectra

Compatative Catalytic Study of Oxidation of Thiourea by Chromium (VI) in Presence of Different Catalysts and Micelles

The series of catalysts like acetate, oxalate, EDTA, the varies micelles viz, CTAB, SDS, TRITON X-100 was carried out in the kinetic study of oxidation of Thiourea by Cr(VI) as an oxidant in water medium.

Chromium, thiourea, micelles, ligands, spectral studies

Applications of Nanomaterials in Membrane Separation for Effluent Treatment in the Textile Industry

The textile industry makes a significant contribution to economic growth. As the global population continues to increase exponentially, production rates are also on the rise to meet this growing demand. Unfortunately, this surge in production often leads to noncompliance with environmental regulations. While the textile industry supports economic development, it also contributes to serious pollution.

Membrane, nanocomposite membrane, graphene oxide, ceramic, membrane, Zno, textile effluent

Polymeric Coating Applied for Corrosion Protection of Mild Steel in Corrosive Medium

Mild steel is coated with a polymer layer of polybutadiene for protection. However, this coating does not effectively safeguard the metal in environments containing moisture, sulphur dioxide, or chloride.

Polybutadiene-coated mild steel, nanocoating, filler, pollutants, composite thin film barrier