The Role of Layered Double Hydroxides in Semiorganic Doped Quantum Materials
International Journal of Science and Research (IJSR)

International Journal of Science and Research (IJSR)
Call for Papers | Fully Refereed | Open Access | Double Blind Peer Reviewed

ISSN: 2319-7064


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Analysis Study Research Paper | Chemical Sciences | India | Volume 14 Issue 2, February 2025 | Popularity: 4.8 / 10


     

The Role of Layered Double Hydroxides in Semiorganic Doped Quantum Materials

Manoj Kumar, Raghvendra Pratap Singh, Anand Kumar Pandey


Abstract: As the world grapples with the pressing need for sustainable energy solutions, the quest for efficient water-splitting technologies has never been more critical. Enter layered double hydroxides (LDHs), a class of materials that are reshaping our understanding of catalysis in the realm of semiorganic doped quantum materials. These innovative compounds, characterized by their unique layered structures and tunable properties, are paving the way for breakthroughs in hydrogen production, offering a promising avenue for harnessing clean energy from water. In this article, we will delve into the fascinating interplay between layered double hydroxides and quantum materials, exploring how their synergistic effects can enhance the efficiency of water splitting processes. Join us as we uncover the science behind this revolutionary approach and its potential to transform the future of renewable energy.


Keywords: LDHs, electrocatalyst, hydrogen production, water splitting, layered double hydroxides, quantum materials, clean energy, semiorganic doped


Edition: Volume 14 Issue 2, February 2025


Pages: 1581 - 1589


DOI: https://www.doi.org/10.21275/SR25225132643


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Manoj Kumar, Raghvendra Pratap Singh, Anand Kumar Pandey, "The Role of Layered Double Hydroxides in Semiorganic Doped Quantum Materials", International Journal of Science and Research (IJSR), Volume 14 Issue 2, February 2025, pp. 1581-1589, https://www.ijsr.net/getabstract.php?paperid=SR25225132643, DOI: https://www.doi.org/10.21275/SR25225132643

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