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1)  transport layer multihoming
传输层多穴
1.
In order to improve the transfer performance of overlay multicast,a new network architecture of overlay multicast based on high fault tolerance and concurrent multipath transfer of transport layer multihoming was designed,which includes abstract service interface layer,transport service layer and overlay multicast layer.
现有的覆盖多播方案皆存在因传输层的单穴技术所导致的固有性能缺陷,为提高覆盖多播的传输性能,提出了相应的解决方案,首先基于传输层多穴技术的高容错性和同时多路径传输能力,采用层次化的设计思想提出了抽象服务接口层、传输服务层和覆盖多播层的多穴覆盖多播网络体系结构,造就了具有QoS保证实时媒体交付的基础环境。
2)  Hole transport layer
空穴传输层
1.
In the experiments NPB is adopted as hole transport layer 4,4′-dis(2,2′diphenylvinyl)-1,1′-biphenyl(DPVBi) is an excellent blue dye for OLEDs.
利用有机发光材料N,N′-bis-(1-naphthyl)-N,N′-diphenyl-1,1′-biphenyl-4,4′-diamine(NPB)作为空穴传输层,4,4′-dis(2,2′diphenylvinyl)-1,1′-biphenyl(DPVBi)作为发光层,aluminium-tris-8-hydroxy-quinoline(Alq3)作为电子传输层,采用ITO/NPB/DPVBi/Alq3/LiF/Al基本结构,研究了NPB厚度对蓝光有机器件(OLED)的亮度和效率的影响。
2.
With poly(N-vinylcarbazole)(PVK)layer used as hole transport layer(HTL),influence of thickness of PVK layer on indium tin oxide(ITO)/PVK/tris-(8-hydroxyquinoline)aluminum(Alq_3)/Mg∶Ag/Al double-layer(DL)device s performance was investigated.
以聚乙烯基咔唑poly(N-vinylcarbazole)(PVK)旋涂层为空穴传输层,着重研究了PVK层厚度对双层器件氧化铟锡(ITO)/PVK/tris-(8-hydroxyquinoline)aluminum(Alq3)/Mg∶Ag/Al器件性能的影响。
3.
Using a spinning polymer layer of poly(N-vinylcarbazole)(PVK) as hole transport layer(HTL) and an evaporated layer of tris(8-hydroxy)quinoline aluminum(Alq_3) as electron transport layer and emission layer,the organic light-emitting diodes(OLEDs) with the structure of ITO/PVK/Alq_3/Mg∶Ag/Al have been fabricated.
采用聚乙烯基咔唑(PVK)作为空穴传输层,8-羟基喹啉铝(Alq3)作为发光层,制备了结构为ITO/PVK/Alq3/Mg∶Ag/Al的有机发光二极管(OLED),通过测试器件的电流?电压?发光亮度特性,研究了空穴传输层厚度对OLED器件性能的影响,优化了器件功能层的厚度匹配。
3)  hole-transmission material
空穴传输层材料
4)  composite hole transporting layer
复合空穴传输层
1.
A doping system consisting of small-molecular hole transporting material NPB and polymer material PVK is employed as the composite hole transporting layer(CHTL).
采用poly(N-vinylcarbazole)(PVK):N,N′-bis-(1-naphthyl)-N,N′-biphenyl-1,1′-biphenyl-4,4′-diamine(NPB)掺杂体系作为复合空穴传输层,通过调节该体系的组分,制备了结构为indium-tin oxide(ITO)/PVK:NPB/8-hydroxyquinoline aluminum(Alq3)/Mg:Ag的双层有机电致发光器件(OLED),研究了具有不同掺杂质量比的OLED器件的电致发光特性,并对掺杂薄膜的表面形貌进行了表征。
5)  Multilayer transmission line
多层传输线
6)  erosion-resistant HTL
抗侵蚀空穴传输层
补充资料:
穴 穴   ①指人体的穴位。《素问·气穴论》:“余闻气穴三百六十五以应一岁。”   ②古人居住的穴室。《灵枢·贼风》:“今有其不离屏蔽,不出空穴之中。”   ③量词。指穴位数目。《素问·气穴论》:“脏俞五十穴,府俞七十二穴。”   ④穿。《外科大成》卷一:“夫用针者,譬之救火,火在屋下,必穴其顶。”
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