材料科学
纳米线
阴极
冷阴极
纳米技术
光电子学
工程物理
电气工程
工程类
作者
Z D Zhang,Yunyao Zhang,Guofu Zhang,Runze Zhan,Shaozhi Deng,Ningsheng Xu,Jun Chen
标识
DOI:10.1002/aelm.202400597
摘要
Abstract Curved or spherical X‐ray sources are significant for use in intraoperative radiotherapy, adaptive static medical imaging, and high‐throughput industrial inspection, but they are hard to achieve using traditional thermionic cathode point electron sources. In this study, copper (Cu)‐doped zinc oxide (ZnO) nanowires grown on a brass substrate with a designed shape are proposed to achieve cold cathode hemispherical X‐ray sources. The strain‐driven solid–liquid growth model of Cu‐doped ZnO nanowires is proposed, and the oxidation temperature‐dependent and time‐dependent growth characteristics are investigated to optimize the morphologies of ZnO nanowire cold cathodes with a typical turn‐on field of 7.36 MV m −1 , a maximum current of 12.54 mA (4.93 mA cm −2 ) and a uniform field emission image with an area of 2.54 cm 2 . Hemispherical X‐ray sources formed by Cu‐doped ZnO nanowire field emitters grown on spherical brass alloy and an Al thin film transmission anode target deposited on a hemispherical quartz glass are successfully fabricated, achieving an operating voltage of 39 kV, a dose rate of 240 µGy air s −1 and a projection X‐ray imaging resolution of 2.8 lp mm −1 , demonstrating their promising use in a variety of applications.
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