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Electrostatically assembled carbon dots/boron nitride nanosheet hybrid nanostructures for thermal quenching-resistant white phosphors

  • Shuai Cheng
  • , Tengyang Ye
  • , Huiwu Mao
  • , Yueyue Wu
  • , Wenjie Jiang
  • , Chaoyi Ban
  • , Yuhang Yin
  • , Juqing Liu
  • , Fei Xiu
  • , Wei Huang
  • Nanjing Tech University

科研成果: 期刊稿件文章同行评审

23 引用 (Scopus)

摘要

Carbon dots (C-dots) are promising and widely applied carbon fluorescent materials for next-generation white light-emitting diodes (WLEDs). However, nonnegligible thermal quenching issues induced by high working temperature of high-power WLEDs severely limit the further development of C-dot phosphors. In this paper, we report an efficient strategy to improve thermal dissipation within C-dot phosphors to solve the thermal quenching problem. C-dots/hexagonal boron nitride nanosheet (BNNS) hybrid nanostructures have been firstly prepared through an electrostatic assembly method. Owing to the effective heat transfer channels established by C-dots/BNNS in a polymer matrix, heat could be dissipated efficiently and the working temperature of WLEDs is reduced by 29 °C, suggesting excellent thermal quenching-resistance properties. Particularly, the hybrids show thermally stable emission without obvious emission loss up to 100 °C. Moreover, the C-dots/BNNS-WLEDs still maintain a high color rendering index of Ra > 89, revealing that the present strategy could promote the exploration of carbon phosphors with thermal quenching resistance for high-quality LED applications.

源语言英语
页(从-至)524-529
页数6
期刊Nanoscale
12
2
DOI
出版状态已出版 - 14 1月 2020

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