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2D Materials for Environmental Remediation

Fabricating 2D Materials Through Chemical Vapor Deposition

Laser Tech: Scientists Unveil Ultrathin Optical Crystal for Next-Generation Innovation

A team of Chinese researchers has made a groundbreaking discovery in the field of laser technology. They have developed a new type of ultra-thin optical

How Raman Spectroscopy Advances 2D Material Research

Raman spectroscopy has been highlighted as a vital tool for characterizing 2D materials-based van der Waal heterostructures. In this article, we explore its applications in analyzing graphene, TMDs and phospherene.

Synthesis Strategies and Nanoarchitectonics for High-Performance Trans by Seungho Baek, Suhyeon Kim et al

Transition metal dichalcogenides (TMDC) exhibit highly superior electrical properties and are typically obtained through mechanical exfoliation. This method has significant limitations, however, such as patterning issues and non-uniformity, which hinder their application in integrated circuits as transistors and array pixel displays. To overcome these challenges, various large-scale deposition methods have been developed. In this review, we introduce five major methods for TMDC deposition: chemical vapor deposition, physical vapor deposition, atomic layer deposition, pulsed laser deposition, and ink-jet printing. An overview of each method is provided in the following order: surface analysis, electrical characteristics, and limitations of each method are discussed. Furthermore, we present three key strategies for an advanced device fabrication using the discussed deposition methods. By implementing these strategies, we can accelerate the development of highly crystalline and scalable T

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