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Syntheses of Some Organic Fluorescent Dyes for Security Tickers
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作者 LIJun-fen BAIGuan LINPei-hua TIANMei-lin DONGChuan LIDu-xin 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2004年第2期216-220,共5页
Five organic fluorescence dyes were synthesized by two- or three-step reactions. These synthetic methods have an advantage of the simple processes, low costs and high yields. The compositions of the five compounds a... Five organic fluorescence dyes were synthesized by two- or three-step reactions. These synthetic methods have an advantage of the simple processes, low costs and high yields. The compositions of the five compounds are characterized by IR, 1H NMR, elemental analyses and fluorescence spectroscopies. The quantum yields of fluorescence were measured. 展开更多
关键词 organic fluorescence dye Security sticker Synthesis
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Green Light-Emitting Organic Electroluminescent Device with a New Fluorescent Dye Dispersed in Poly(N-vinylcarbazole) Emitter Layer
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作者 Yong QIU De Qiang ZHANG +1 位作者 Zhi Liang XIE Xiao Xuan LIU(Department of Chemistry Tsinghua University, Beijing 100084) 《Chinese Chemical Letters》 SCIE CAS CSCD 1997年第1期79-80,共2页
Double-layer organic electroluminescent devices have been constructed. A new fluorescent dye, 9,10-bis(phenylethynyl)anthracence, was chosen as the dopant which was molecularly dispersed in the polymer film, and green... Double-layer organic electroluminescent devices have been constructed. A new fluorescent dye, 9,10-bis(phenylethynyl)anthracence, was chosen as the dopant which was molecularly dispersed in the polymer film, and green light was observed from the device with luminance of 130cd/m(2) at 17V. 展开更多
关键词 Green Light-Emitting organic Electroluminescent Device with a New fluorescent Dye Dispersed in Poly N-VINYLCARBAZOLE Emitter Layer
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Multicolor Anti-counterfeiting Strategy and Synchronous High Capacity Storage Based on Acidochromic Organic Fluorescent Materials
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作者 Ying Fang Jun-Yu Luan +6 位作者 Li-Hao Liu Ying-Qing Huang Yi-Ning Luo Kun-Peng Wang Shaojin Chen Hai-Yu Hu Zhi-Qiang Hu 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2024年第19期2363-2369,共7页
Comprehensive Summary Many industries are plagued by economic losses and product failures caused by counterfeit goods.Therefore,advanced anti-counterfeiting techniques are continuously needed.In this study,we construc... Comprehensive Summary Many industries are plagued by economic losses and product failures caused by counterfeit goods.Therefore,advanced anti-counterfeiting techniques are continuously needed.In this study,we constructed a series of acid-base sensitive cyclic chalcone dyes A—F by modifying different electron-donating groups.Differences in acid sensitivity of different structures are well rationalised by NMR and theoretical calculations.Aniline is difficult to protonate than fatty amines,so there is a difference in fluorescence.Hiding and anti-counterfeiting of information is achieved by this phenomenon.Powder X and Y are the anti-counterfeit fluorescent powder containing montmorillonite and cyclic chalcone,which have orange fluorescence and the very similar appearance.However,under the influence of acid the Powder X containing triphenylamine modified cyclic chalcone shows red shifted fluorescence and Powder Y containing morpholino and diethylamino groups modified cyclic chalcone shows blue shifted fluorescence.Therefore,the anti-counterfeiting strategy based on cyclic chalcone is not only limited to UV-irradiated fluorescence development,but also has more colorization and pattern variations with the aid of acid developer.Data encryption and decryption of numbers,English alphabets and Chinese characters have been realized using A—F,which have great potential for practical applications. 展开更多
关键词 Cyclic chalcones ANTI-COUNTERFEITING ENCRYPTION Acid sensitivity organic fluorescent dye
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Enhancement of electroluminescent properties of organic optoelectronic integrated device by doping phosphorescent dye 被引量:1
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作者 雷疏影 钟建 +2 位作者 周殿力 朱方云 邓朝旭 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第11期434-440,共7页
Organic optoelectronic integrated devices(OIDs) with ultraviolet(UV) photodetectivity and different color emitting were constructed by using a thermally activated delayed fluorescence(TADF) material 4, 5-bis(ca... Organic optoelectronic integrated devices(OIDs) with ultraviolet(UV) photodetectivity and different color emitting were constructed by using a thermally activated delayed fluorescence(TADF) material 4, 5-bis(carbazol-9-yl)-1, 2-dicyanobenzene(2 CzPN) as host. The OIDs doping with typical red phosphorescent dye [tris(1-phenylisoquinoline)iridium(Ⅲ), Ir(piq)3], orange phosphorescent dye {bis[2-(4-tertbutylphenyl)benzothiazolato-N,C-(2')]iridium(acetylacetonate),(tbt)2 Ir(acac)}, and blue phosphorescent dye [bis(2, 4-di-fluorophenylpyridinato)-tetrakis(1-pyrazolyl)borate iridium(Ⅲ), FIr6] were investigated and compared. The(tbt)2 Ir(acac)-doped orange device showed better performance than those of red and blue devices, which was ascribed to more effective energy transfer. Meanwhile, at a low dopant concentration of 3 wt.%, the(tbt)2 Ir(acac)-doped OIDs showed the maximum luminance, current efficiency, power efficiency of 70786 cd/m^2, 39.55 cd/A, and 23.92 lm/W, respectively, and a decent detectivity of 1.07 × 10^11 Jones at a bias of -2 V under the UV-350 nm illumination. This work may arouse widespread interest in constructing high efficiency and luminance OIDs based on doping phosphorescent dye. 展开更多
关键词 organic optoelectronic integrated device thermally activated delayed fluorescence host phosphorescent dye high luminance
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