• A new type of field emission cathode was devised.

    设计了一种新的金刚石发射阴极工艺。

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  • Carbon nanotube (CNT) is perfect material as field emission cathode.

    纳米管(CNT)作为理想的发射阴极材料

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  • Carbon nanotube (CNT) are perfect material as field emission cathode.

    纳米管(CNT)作为理想的发射阴极材料

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  • Using diamond film or diamond-like film as field emission cathode is one of the promising applications.

    金刚石金刚石膜用来作为发射阴极极具前景应用之一。

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  • The field emission cathode driven with an active array is the main candidate for large screen displays.

    有源矩阵驱动平面发射阴极屏幕显示主要候选部件。

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  • Field emission display is a new type of flat-panel display and field emission cathode is an important component part of field emission display.

    发射显示器一种新型具有竞争力的平板显示器,场致发射阴极是场致发射显示器的重要组成部分

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  • The treated carbon nanotube mat results in improved field emission performance as either a field emission cathode or as part of a field emission device.

    处理纳米管无论作为发射阴极还是场发射装置的一部分均具有改进的场发射性能

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  • Using field emission cathode, X ray source can be made with several advantages: smaller volume and brighter, high frequency response, in-time turning on, etc.

    采用发射阴极X射线光源具有体积,辐射强度频率响应快,可以随时开启,无需预热的优点。

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  • With the merits of high hardness, high thermal conduction, negative electron affinity, diamond is deemed one of the preferred materials of the field emission cathode.

    金刚石因具有硬度高热导率、负电子亲和势等优点而成为发射阴极首选材料之一

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  • Among all of the field emission cathodes, the silicon-based field emission cathode has been hoped much because of its easily-realized integration with the surrounding drive circuits.

    硅基发射阴极易于与其周边驱动电路实现集成,因而具有明显开发前景。

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  • Chapter III the Application of carbon nanotubes in field emission Display in this chapter, we introduce the researches of the carbon nanotubes as the field emission cathode materials.

    第三纳米碳管在场发射显示器中的应用研究章主要介绍纳米碳管作为发射显示器阴极材料研究。

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  • We pack the cathode panel with the anode panel and conduct the field emission experiment.

    阴极阳极板相组装,进行致发射特性测试

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  • Field emission stability and life time of CNT cathode is closely related with the vacuum level, thermal effects during the emission and the current transport capability.

    影响碳纳米管阴极发射稳定性寿命主要因素真空度、场发射过程中的热效应以及场发射体对场发射电流承载能力等

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  • With the carbon nanotube film as cathode materials, the field emission characteristics of the carbon nanotube film cathode are presented and analyzed.

    利用纳米薄膜作为阴极材料给出分析了碳纳米管薄膜阴极致发射特性

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  • It is found electrical characteristics of cathodes are affected by CNT content, and only cathode with appropriate CNT content has the optimal field emission properties.

    实验发现纳米管冷阴极导电性发射特性碳纳米管含量影响,具有适当碳纳米管含量的冷阴极的场发射特性最佳

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  • Now the key to fabricate FED device is to find a economical and credible cathode, which has excellent field emission capability and simple manufacture technology.

    当今FED研究的关键寻找致发射性能良好制作工艺简单经济可靠阴极

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  • Preparation of graphene composite field emission cold cathode to achieve graphene in the composite structure of the quasi-two-dimensional distribution is our plan.

    制备石墨复合材料的发射阴极实现石墨烯复合材料中的准二维结构分布

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  • A good vacuum property of field emission devices with cathode can be expected.

    氧化锌作为阴极发射器件将具有更好的真空特性

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  • Carbon nanotubes(CNTs) have been thought as one of the most promising cold cathode materials of electron field emitters in field emission display(FED).

    发射阴极材料、场发射阳极荧光材料、隔离柱材料以及器件封装工艺场发射显示器FED三大核心技术难题。

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  • Finally we discuss the differences of turn-on voltage, field emission current density and the stability of field emission display because the differences of the cathode of field emission.

    讨论由此而导致开启电场的变化、发射电流密度的变化以及亮度稳定性的变化。

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  • The factors limiting the measurement and achievement of extremely high vacuum due to the existence of a hot cathode was overcome by the successful use of the field-emission cold cathode...

    应用场致发射阴极成功克服阴极给极高真空测量获得方面带来的限制因素解决极高真空测量问题的关键一步。

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  • Field emission display (FED) device is one of the flat panel display devices whose emission theory is the most close to the cathode-ray tube (CRT).

    发射显示(FED)发光原理接近阴极射线管(CRT)一种平板显示器件

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  • Field emission display (FED) device is one of the flat panel display devices whose emission theory is the most close to the cathode-ray tube (CRT).

    发射显示(FED)发光原理接近阴极射线管(CRT)一种平板显示器件

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