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Ton Duc Thang University (TDTU) was established on September 24, 1997, as a public university under the Vietnam General Confederation of Labor. After 29 years of development, TDTU has grown into one of the leading universities in Vietnam, with a strong commitment to academic excellence, scientific research, innovation, and international cooperation. With modern facilities, advanced educational programs, and a multidisciplinary approach, TDTU provides a dynamic learning and research environment that promotes creativity and supports the comprehensive development of learners.

Currently, TDTU comprises 16 faculties and offers 52 undergraduate study programs, with a community of more than 77,000 alumni. The University also collaborates with more than 200 adjunct professors and researchers and has produced over 14,200 international publications, reflecting its growing contribution to global academic and scientific communities.

With the vision of becoming a world-class university, TDTU continues to strengthen its educational and research capacity, foster innovation, and enhance international collaboration. The establishment and development of the Journal of Advanced Engineering and Computation (JAEC) represent one of TDTU’s efforts to promote scientific research, disseminate advanced knowledge, and contribute to the development of engineering, technological and interdisciplinary research. More

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Ton Duc Thang University
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Nguyen Trung Thang
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Vo Hoang Duy
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Nguyen-Thanh Nhon
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Do Duc Ton
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Juan Carlos Burguillo Rial
Akhil Garg
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Mahdi Shariati
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  • Vol 8, No 4 (2024)
  • Lee

Illumination properties and gadget efficiency steadiness of wleds based on quantum dots

Hsiao Yi Lee, Thinh Cong Tran, Sang Dang Ho

Abstract


The recent improvements in picture quality have led to the need for new methods to create displays that meet more rigorous standards. While the screen market is mainly dominated by liquid crystal display (LCD) and light emitting diode (LED) technology, these technologies have downsides solvable via creating augmented electroluminescent screens. Utilizing sticky quantum dots (QDs) in the form of down transmuters facilitates creating screens featuring highly improved chroma clarity as well as range. As such, sticky nanocrystals prove a promising option when it comes to creating electroluminescent devices, providing a simple way to build high-quality displays. The QDs that emit light featuring significant fluorescent quantum output along with chroma clarity covering the entire visible spectrum, as well as significantly-bright singular-chroma LED apparatuses featuring extrinsic quantum proficiencies reaching 1.30%, 0.39%, 1.04%, and 2.10% respectively in the case of blue, red, orange, and green hues, saw the prospect of development. Additionally, white LEDs were created by combining QDs, achieving a color temperature of 5,300 K and over 80% color rendering index. The LED performance is also extensively evaluated, including color stability, and device efficiency, providing crucial data for the advancement of high-quality electroluminescent displays.


Keywords


White LED, Lambert-Beer law, color rendering index, luminous efficacy

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DOI: http://dx.doi.org/10.55579/jaec.202484.459

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This work is licensed under a Creative Commons Attribution 4.0 International License.