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Synthesis and Investigation of Phenol Red Dye Doped Polymer Films 被引量:1
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作者 Imad Al-Deen Hussein A. Al-Saidi Faisal Sadik 《Advances in Materials Physics and Chemistry》 2016年第5期120-128,共9页
The optical properties of the pure polymer film and polymer films doped with Phenol Red dye at different concentrations were investigated. The films were prepared using the casting technique. Poly (methyl-methacrylate... The optical properties of the pure polymer film and polymer films doped with Phenol Red dye at different concentrations were investigated. The films were prepared using the casting technique. Poly (methyl-methacrylate) (PMMA) polymer was doped with the Phenol Red dye dissolved in a mixture of chloroform and little quantity of methanol, used as suitable solvent for both the dye and the polymer. The spectral absorption measurements of these films were carried out at different dye concentrations using UV-Vis double-beam spectrophotometer in the wavelength range 300 - 800 nm. The optical parameters of the prepared Phenol Red dye doped polymer films, absorption coefficient (α), extinction coefficient (κ), refractive index (n), optical and electrical conductivities (σ<sub>opt</sub> and σ<sub>elect</sub>), and optical energy band gap (E<sub>g</sub>), were determined. The results showed that the Phenol Red dye doped polymer film is a good candidate for photonic applications such as, solar cells, optical sensors, and other photonic devices. 展开更多
关键词 Optical Properties Optical Constants Phenol Red dye dye doped Polymer Films Optical Energy Band Gap
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Reverse mode switching of the random laser emission in dye doped liquid crystals under homogeneous and inhomogeneous electric fields
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作者 M.Shasti P.Coutino +7 位作者 S.Mukherjee A.Varanytsia T.Smith A.P.Luchette L.Sukhomlinova T.Kosa A.Munoz B.Taheri 《Photonics Research》 SCIE EI 2016年第1期7-12,共6页
We report the observation of electric field induced random lasing in a dye doped liquid crystal system. This was achieved by using a liquid crystal host with negative dielectric anisotropy doped with laser dye PM 597 ... We report the observation of electric field induced random lasing in a dye doped liquid crystal system. This was achieved by using a liquid crystal host with negative dielectric anisotropy doped with laser dye PM 597 in a 75 μm cell with a homeotropic alignment layer. In the absence of an applied field, only amplified spontaneous emission was observed since the liquid crystal orientation was uniform. However, application of a field resulted in a fieldinduced planar-like configuration with local nonuniformity in liquid crystal orientation. This led to random lasing in the energized state(voltage greater than a transition threshold). The onset of lasing occurs by application of either a spatially homogenous or a spatially inhomogeneous electric field across the liquid crystal. The characteristics of the emission spectra as a function of different(i) dye concentration and(ii) applied voltage were investigated using nanosecond pulsed laser excitation at 532 nm. The effects of using an inhomogeneous field were compared to the use of a homogenous field and reported. It is shown that the spatial configuration can be used to alter the emission spectra of the system. The work is used to suggest a new configuration, referred to here as"reverse mode," for liquid crystal-based random lasers. This new configuration may provide additional avenues for their use in commercial devices. 展开更多
关键词 mode Reverse mode switching of the random laser emission in dye doped liquid crystals under homogeneous and inhomogeneous electric fields
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Enhancement of open circuit voltage in organic solar cells by doping a fluorescent red dye
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作者 Qing LI Junsheng YU +2 位作者 Yue ZANG Nana WANG Yadong JIANG 《Frontiers in Energy》 CSCD 2012年第2期179-183,共5页
The open circuit voltage (Voc) of small- molecule organic solar cells (OSCs) could be improved by doping suitable fluorescent dyes into the donor layers. In this paper, 4-(dicyanomethylene)-2-t-butyl-6-(1,1,7,7... The open circuit voltage (Voc) of small- molecule organic solar cells (OSCs) could be improved by doping suitable fluorescent dyes into the donor layers. In this paper, 4-(dicyanomethylene)-2-t-butyl-6-(1,1,7,7- tetramethyljulolidyl-9-enyl)-4H-pyran (DCJTB) was used as a dopant, and the performance of the OSCs with different DCJTB concentration in copper phthalocyanine (CuPc) was studied. The results showed that the Voc of the OSC with 50% of DCJTB in CuPc increased by 15%, compared with that of the standard CuPc/fullerene (C60) device. The enhancement of the Voc was attributed to the lower highest occupied molecular orbital (HOMO) level in the DCJTB than that in the CuPc. Also, the light absorption intensity is enhanced between 400 and 550nm, where CuPc and C6o have low absorbance, leading to a broad absorption spectrum. 展开更多
关键词 organic solar cells (OSCs) open circuit voltage fluorescent dye doping 4-(dicyanomethylene)-2- t-butyl-6-( 1 1 7 7-tetramethyljulolidyl-9-enyl)-4H-pyran (DCJTB)
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