Exploring inorganic phosphors: basics, types, fabrications and their luminescence properties for LED/WLED/displays

Author:

Rahman Junaid Ur1,Khan Shahab2ORCID,Jain Vicky3,Rajiv Asha4,Dasi Shivakrishna5,Fawy Khaled Fahmi6,Jindal Pardeep Kumar7,Sivaranjani Reddi8ORCID

Affiliation:

1. Department of Physics , University of Peshawar , Peshawar , Pakistan

2. Department of Chemistry , University of Malakand , Dir Lower , Malakand , Pakistan

3. Marwadi University Research Center, Department of Chemistry, Faculty of Science , Marwadi University , Rajkot 360003 , Gujarat , India

4. Department of Physics and Electronics, School of Sciences , JAIN (Deemed to be University) , Bangalore , Karnataka , India

5. NIMS School of Computing Science and Artificial Intelligence , NIMS University Rajasthan , Jaipur , India

6. Department of Chemistry, Faculty of Science , King Khalid University , P.O. Box. 9004 , Abha 61413 , Saudi Arabia

7. Department of ECE , Chandigarh, Group of Colleges, Jhanjeri , Mohali 140307 , Punjab , India

8. Department of computer Science and Engineering , Raghu Engineering College , Visakhapatnam , Andhra Pradesh 531162 , India

Abstract

Abstract The utilization of phosphors in lighting and display applications has garnered significant attention due to their unique luminescent properties and versatile crystal structures. This review article comprehensively examines recent advances in the synthesis, characterization, and applications of nitride and sulfide phosphors. This article addresses various phosphor crystal structures, including perovskite, garnet, nitride sulfide, fabrications strategies, and their impact on the optical and electronic properties. Furthermore, the review highlights the role of doping and activator ions in tailoring the emission characteristics of nitride and sulfide phosphors, enabling precise control over color rendering and efficiency. Additionally, the article also discusses emerging trends in phosphor technology, such as the development of novel synthesis methods and the integration of phosphors into next-generation lighting and display devices. The basic properties of phosphor materials like CRI, CIE chromaticity coordinates, quantum efficiencies are well discussed. Overall, this article provides valuable insights into the current state of research and future directions in the field of phosphors offering potential avenues for further advancements in lighting and display technologies.

Funder

Deanship of Scientific Research at King Khalid University

Publisher

Walter de Gruyter GmbH

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