Vol. 7 No. 2 (2026): March 2026

ISSN Online : 2686-0961

ISSN Print : 2721-446X

Publisher
Faculty of Engineering Universitas Riau and Applied Materials and Technology Society

Copernicus rating history

ICV 2024 : 100.00

ICV 2023 : 97.30

ICV 2022 : 95.39

ICV 2020 : 96.67

ICV 2019 : 74.25

About Journal

Journal of Applied Materials and Technology (JAMT) is aimed at capturing current development and initiatives in applied materials and technology. JAMT showcases innovative applied materials and technology, providing an opportunity for science, transfer and collaboration of technology.

JAMT focuses on the publication in the area of material science, material engineering and technology, renewable energy, sustainable material and construction method. The selected, high-quality reviews, research reports at the state of the art of the science and material technology are welcomed.

At Journal of Applied Materials and Technology (JAMT), we uphold a commitment to scholarly integrity and transparent publishing practices. In light of the growing role of artificial intelligence (AI), particularly generative language models (LLMs), the authors should follow our guidence regarding this matter from this link.

The journal will publish at least two issues (Bi-Annually. First issue in March and Second in September) each year. Articles are published online when ready for publication (Continuously) as Article in Press. Additional issues may be published for special events (e.g. conferences) and when special themes are addressed. If you want to submit an article, please follow this link.

As a member of Crossref, JAMT participates in Crossmark, a multi-publisher initiative, to provide a standard way for readers to locate the authoritative version of a document. The appearance of the Crossmark logo on a document indicates that JAMT is committed to maintaining the content it publishes and to alerting readers to changes if and when they occur. Clicking the Crossmark logo on a document will tell you its current status and may also give you additional publication-record information about the document. If an update exists, the status information will include a Crossref DOI link to the updated document and any associated documents such as Errata, Expressions of Concern, and Retractions.

Articles

Preparation and characterization of MoS2 thin films for thermoelectric applications using the PVD technique

Dec 18, 2025
49-57
Joede dos Passos, Adhimar Flavio Oliveira, Rero Marques Rubinger
Read Statistic: 44

Molybdenum disulfide (MoS2) is a two-dimensional material with electronic and thermal properties that make it promising for thermoelectric applications. This research presents the results of synthesizing and characterizing MoS2 thin films obtained by Physical Vapor Deposition (PVD) on silicon dioxide (SiO2) substrates. Three experimental approaches were explored to assess how changes in deposition conditions affect the material quality. In the first trial, films were formed from commercial MoS? powder in a sulfur-rich (S2) atmosphere using a PVD tubular furnace. Next, water vapor (H2O) was added to the process to observe possible improvements in material formation. Finally, silver doping was investigated, introduced during deposition to examine structural and vibrational changes in the MoS2. The samples were characterized by Optical Microscopy (OM) and Scanning Electron Microscopy (SEM), as well as Energy Dispersive Spectroscopy (EDS), used to evaluate surface morphology and composition. X-ray Diffraction (XRD) was employed to identify the crystalline structure, while Raman Spectroscopy revealed the E2g1 and A1g vibrational modes, associated with the crystallinity of the material. The results indicated that the presence of H2O during deposition favored the growth of more ordered films, with more intense peaks in XRD and Raman spectra. On the other hand, silver doping caused vibrational changes that suggest modifications in the electronic structure of MoS2.  These findings reinforce the material’s potential for use in thermoelectric devices and demonstrate that variations in synthesis conditions can significantly enhance its structural and functional properties.

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Announcements

FEATURED ARTICLE

Dec 14, 2025

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In the featured article  titled “Characterization and Impact of Graphene Oxide on the Curing and Mechanical Properties of Epoxy Resins”, the authors present a compelling study that bridges nanotechnology and polymer engineering. By integrating graphene oxide (GO) into epoxy resin matrices, they reveal a transformative approach to enhancing curing behavior and mechanical performance—two critical factors in industrial material design.

The research highlights how GO acts as a functional nanofiller, accelerating the curing process while simultaneously improving tensile strength, modulus, and fracture resistance. These improvements are not merely incremental; they represent a strategic step toward next-generation epoxy systems with tailored properties that meet the demands of aerospace, automotive, electronics, and advanced manufacturing sectors.

What sets this study apart is its dual emphasis on microstructural insight and application relevance. Through detailed SEM analysis and thermal characterization, the authors provide a clear understanding of how GO disperses within the resin and interacts at the molecular level—leading to superior interfacial bonding and structural integrity.

This research exemplifies a rare blend of scientific rigor and industrial relevance, offering insights that not only advance academic understanding but also catalyze real-world innovation. The authors’ contribution is meaningful to the evolving field of smart materials, and we strongly encourage continued exploration into nanostructured composites that push the boundaries of material performance.

Call for paper Vol 7, Issue 2 (March 2026).

Dec 14, 2025

The Journal of Applied Materials and Technology (JAMT) invites researchers, academicians, and professionals to submit their original works for publication in Vol 7, Issue 2 (March 2026).  We welcome contributions in the form of research articles, review articles, and short comunication articles that explore all aspects of materials science and technology.

Accepted papers will be published in this upcoming issue, contributing to ongoing discussions and advancements in the field. For details on manuscript preparation, please refer to the Author Guidelines section of our journal.

Submission Deadline: February 29, 2026

Join us in shaping the future of materials and technology research!

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