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Tricolor microcavity OLEDs based on P-nc-Si:H films as the complex anodes
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作者 李阳 刘星元 +3 位作者 吴春亚 孟志国 王忆 熊绍珍 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2009年第6期42-47,共6页
A P^+-nc-Si:H film(boron-doped nc-Si:H thin film) was used as a complex anode of an OLED.As an ideal candidate for the composite anode,the P^+-nc-Si:H thin film has a good conductivity with a high work function... A P^+-nc-Si:H film(boron-doped nc-Si:H thin film) was used as a complex anode of an OLED.As an ideal candidate for the composite anode,the P^+-nc-Si:H thin film has a good conductivity with a high work function(- 5.7 eV) and outstanding optical properties of high reflectivity,transmission,and a very low absorption.As a result,the combination of the relatively high reflectivity of a P^+-nc-Si:H film/ITO complex anode with the very high reflectivity of an Al cathode could form a micro-cavity structure with a certain Q to improve the efficiency of the OLED fabricated on it.An RGB pixel generated by microcavity OLEDs is beneficial for both the reduction of the light loss and the improvement of the color purity and the efficiency.The small molecule Alq would be useful for the emitting light layer(EML) of the MOLED,and the P^+-nc-Si film would be used as a complex anode of the MOLED,whose configuration can be constructed as Glass/LTO/P^+-nc-Si:H/ITO/MoO3/NPB/Alq/LiF/Al.By adjusting the thickness of the organic layer NPB/Alq,the optical length of the microcavity and the REB colors of the device can be obtained.The peak wavelengths of an OLED are located at 486,550,and 608 nm,respectively.The CIE coordinates are(0.21,0.45),(0.33,0.63),and(0.54,0.54),and the full widths at half maximum(FWHM) are 35,32,and 39 nm for red,green,and blue,respectively. 展开更多
关键词 P^+-nc-si:h thin film organic light emitting display MICROCAVITY TRICOLOR
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H_2S对缺血再灌注神经元的保护作用及机制
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作者 邵建林 万晓红 +3 位作者 王玲玲 王俊科 叶青山 马宏仲 《中华神经医学杂志》 CAS CSCD 2007年第6期545-549,共5页
目的研究H2S对缺血再灌注损伤后神经元存活信号转导通路ERK1/2/P^(90RSK)的影响。方法将培养7 d的海马神经元随机分为5组:正常培养组(C组)、缺血再灌注组(I/R组)、缺血再灌注+NaHS组(NaHS组)、缺血再灌注+NaHS+U-0126(ERK抑制剂)组(U组... 目的研究H2S对缺血再灌注损伤后神经元存活信号转导通路ERK1/2/P^(90RSK)的影响。方法将培养7 d的海马神经元随机分为5组:正常培养组(C组)、缺血再灌注组(I/R组)、缺血再灌注+NaHS组(NaHS组)、缺血再灌注+NaHS+U-0126(ERK抑制剂)组(U组)、缺血再灌注+NaHS+Rapamycin(RS6K抑制剂)组(R组)。C组神经元按正常培养方法培养。NaHS组神经元在神经元进行缺血再灌注时加入NaHS使其终浓度为150μmol/L。U组和R组在加入150μmol/L NaHS的同时分别加入U-0126 10μmol/L或Rapamycin lO nmol/L。各组行细胞存活力、神经元凋亡、cAMP、磷酸化ERK1/2(PERK1/2)和磷酸化P^(90RSK)(PP^(90RSK))蛋白表达的检测。结果NaHS显著增加了cAMP的浓度(与I/R组比较,P<0.01)、PERK1/2蛋白(与I/R组比较,P<0.05)和PP^(90RSK)蛋白(与I/R组比较,P<0.05)表达,同时增加了神经元存活率(与I/R组比较,P<0.05)、降低了神经元凋亡率(与I/R组比较,P<0.05);U-0126抑制了PERK1/2蛋白(与NaHS组比较,P<0.05)和PP^(90RSK)蛋白(与NaHS组比较,P<0.05)表达同时使神经元存活率降低(与NaHS组比较,P<0.05)、神经元凋亡率升高(与NaHS组比较,P<0.05);Rapamycin抑制了PP^(90RSK)蛋白(与NaHS组比较,P<0.05)表达同时使神经元存活率降低(与NaHS组比较,P<0.05)、神经元凋亡率升高(与NaHS组比较,P<0.05)而不影响PERK1/2的表达(与NaHS组比较,P>0.05)。结论H_2S通过cAMP激活了ERK1/2/P^(90RSK)信号通路,在海马神经元缺血再灌注时抑制了神经元的凋亡,保护了神经元。 展开更多
关键词 h2S ERK1/2 P^90RSK 细胞信号转导 神经元缺血再灌注
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