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New nonlinear optical polymers with adjustable subtle structure and
Due to their potential application in high-speed electrooptic (EO) devices with very broad bandwidth and low driving voltages, organic second order nonlinear optical (NLO) materials have attracted much attention among scientists. One of&nbs...
http://www.polymer.cn/research/dis_info11337 |
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Optical emission from conjugated polymers at biomolecular hosts
Optical processes of absorption and emission from luminescent polymers are highly sensitive tothe mode of organization of the emitter. This organization can be influenced by interaction withbiomolecules, and nanostructures formed from biomolecul...
http://www.polymer.cn/research/dis_info8856 |
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THE OPTICAL PROPERTIES OF TITANIUM DIOXIDE FOR SELF-CLEANING APPLICATION
Titanium dioxide (TiO2) material in nanofilm or nanocoating form has been extensively used in many applications due to it is antibacterial, antireflection coating for photovoltaic cells and self-cleaning coatings of windows and tiles.
http://www.polymer.cn/research/dis_info16163 |
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Reactive Conjugated Polymers for Optical and Electronic Applications
In the last few decades, π-conjugated polymers had played important roles in organic optoelectronic field, because their physical properties (color, photoluminescence efficiency, carrier mobility) could be fine-tuned by manipulation of their ch...
http://www.polymer.cn/research/dis_info13088 |
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REACTIVE CONJUGATED POLYMERS FOR OPTICAL AND ELECTRONIC APPLICATIONS
In the last few decades, π-conjugated polymers had played important roles in organic optoelectronic field, because their physical properties (color, photoluminescence efficiency, carrier mobility) could be fine-tuned by manipulation of their ch...
http://www.polymer.cn/research/dis_info11876 |
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New nonlinear optical polymers with adjustable subtle structure and
Due to their potential application in high-speed electrooptic (EO) devices with very broad bandwidth and low driving voltages, organic second order nonlinear optical (NLO) materials have attracted much attention among scientists. One of&nbs...
http://www.polymer.cn/research/dis_info11337 |
|
Optical emission from conjugated polymers at biomolecular hosts
Optical processes of absorption and emission from luminescent polymers are highly sensitive tothe mode of organization of the emitter. This organization can be influenced by interaction withbiomolecules, and nanostructures formed from biomolecul...
http://www.polymer.cn/research/dis_info8856 |
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Optical absorption properties of Ge2–44 and P-doped Ge nanoparticles
The optical absorption properties of non-crystalline and crystalline Ge nanoparticles with the sizes from ~2.5 to 15 ? have been studied at the B3LYP/6-31G level using time-dependent density functional theory. Hydrogen passivation and phosphorus doping on some selected Ge nanoparticles were also calculated. With the increase of cluster size, the optical absorption spectra of the non-crystall...
http://www.polymer.cn//ss/grouplu/publicationsshow_12547.html |
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Low temperature preparation and optical properties of K2Ti6O13
A simple and cost-effective route was developed for the low temperature (700 °C) synthesis of K2Ti6O13 powder, using low-melting-point KNO3 and high-reactive-activity P25 TiO2nanocrystals as the reactants. The characterization results from X-ray diffraction and field emission scanning electron microscopy revealed the successful preparation of monoclinic phase K2Ti6O13 crystall...
http://www.polymer.cn//ss/zhangming/publicationsshow_10580.html |
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6. Sul-containing fluorinated polyimides for optical waveguide device
Novel sul-containing fluorinated polyimides have been synthesized by the reaction of 2,2''''''''-bis-(trifluoromethyl)-4,4''''''''-diaminodiphenyl sulfide (TFDAS) with 1,4-bis-(3,4-dicarboxyphenoxy)benzene dianhydride (HQDPA), 2,2''''''''-bis-(3,4-dicarboxyphenyl)hexafluoropropane dianhydride (6FDA), 4,4''''''''-oxydiphthalicanhydride (ODPA) or 3,4,3'''''''',4''''''''-biphenyl-tetracarboxylic acid...
http://www.polymer.cn//ss/guanshaowei/publicationsshow_10348.html |
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