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Fabrication of g-C3N4 Nanosheets Through Solvent-Assisted Synthesis for Improved Photocatalytic Applications

IMPACT SIGNAL72/100
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Information from the abstract

Graphitic carbon nitride (g-C3N4) has emerged as a photocatalyst material of interest due to its strong visible-light activity, good stability, and tunable electronic properties, making it attractive for environmental and energy-related applications. However, producing high quality exfoliated g-C3N4 nanosheets using a simple and low-cost technique remains challenging. In this work, bulk g-C3N4 was synthesized through the thermal polymerization of melamine and subsequently exfoliated ultrasonically in either deionized water (CN-DI) or isopropanol (CN-IPA). Different exfoliation pathways including thermal, chemical, and one-step methods were examined to determine their impact on the nanosheets’ structural and photocatalytic characteristics. X-ray diffraction (XRD) confirmed that the crystalline structure of g-C3N4 remained intact after exfoliation. Transmission electron microscopy (TEM) and scanning electron microscope (SEM) analyses showed the formation of ultrathin nanosheet-like structures with a layered morphology. The ultrathin nanosheets displayed broadened interlayer spacing, as further supported by UV-Vis and photoluminescence (PL) results that showed a noticeable red shift, enhanced light absorption, and reduced electron-hole recombination in CN-DI and CN-IPA compared with bulk g-C3N4. These improvements primarily stem from increased surface area, better charge separation, and more effective photon utilization achieved through ultrasonic exfoliation. Photocatalytic tests additionally revealed that both CN-DI and CN-IPA achieved more than 60% degradation of organic dyes under UV illumination. Overall, the findings highlight a straightforward, green, and scalable approach for producing high-performance g-C3N4 nanosheets suitable for wastewater purification under UV-light environment.

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Why this record is monitored

This record has an Impact Signal of 72/100 based on recency, source, collaboration, and bibliographic signals. It prioritizes monitoring and is not a judgment of research quality.

Related topics: Advanced Photocatalysis Techniques · TiO2 Photocatalysis and Solar Cells · 2D Materials and Applications

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Thai researcher and institutional participation

Htet Yadanar Soe · Thanate Na Wichean · Gasidit Panomsuwan · Oratai Jongprateep · Ratchatee Techapiesancharoenkij · Kasetsart University

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Data limitations

This page is a bibliographic record based on abstract-level information, not a full analysis or quality assessment. Verify the DOI and original article before citation.