Abstract
Based on azo group and anthraquinone moiety, new black matrix pigment materials AAQ and DAAQ were synthesized for the first time through Suzuki C-N coupling. As a result of verifying UV-visible absorption spectra of the synthesized materials, DAAQ was found to absorb the entire visible region in 400-800 nm in solution state with high extinction coefficient of 8.1 × 103 L/cm·mol. Realization of black color using a single material is expected to be useful for black matrix application. Also in film state made through spin coating, both AAQ and DAAQ absorbed the entire visible region.
Original language | English |
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Title of host publication | 10th International Meeting on Information Display and International Display Manufacturing Conference and Asia Display 2010, IMID/IDMC/ASIA Display 2010 |
Pages | 828-829 |
Number of pages | 2 |
Publication status | Published - 2010 |
Event | 10th International Meeting on Information Display and International Display Manufacturing Conference and Asia Display 2010, IMID/IDMC/ASIA Display 2010 - Seoul, Korea, Republic of Duration: 11 Oct 2010 → 15 Oct 2010 |
Publication series
Name | Proceedings of International Meeting on Information Display |
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ISSN (Print) | 1738-7558 |
Conference
Conference | 10th International Meeting on Information Display and International Display Manufacturing Conference and Asia Display 2010, IMID/IDMC/ASIA Display 2010 |
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Country/Territory | Korea, Republic of |
City | Seoul |
Period | 11/10/10 → 15/10/10 |
Bibliographical note
Funding Information:This research was supported by a grant (Catholic Univ.) from the Fundamental R&D Program for Core Technology of Materials funded by the Ministry of Knowledge Economy (MKE), Republic of Korea. This study was supported by a grant (Hanyang Univ.) from the Fundamental R&D Program for Core Technology of Materials funded by the Ministry of Knowledge Economy (MKE), Republic of Korea. This work was supported by the National Research Foundation of Korea (NRF) grant funded by the Korea government (No. M2009A010800007). This study was supported by a grant from the Strategy Project funded by the Ministry of Knowledge Economy (MKE), Republic of Korea.
Keywords
- Anthraquinone
- Azo group
- Black matrix
- LCD