Invention Grant
- Patent Title: Radiation detector having coated nanostructure and method
- Patent Title (中): 具有涂层纳米结构和方法的辐射检测器
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Application No.: US11129582Application Date: 2005-05-13
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Publication No.: US07388201B2Publication Date: 2008-06-17
- Inventor: Marian Cholewa , Shu Ping Lau , Gyu-Chul Yi , Jin Kyoung Yoo , Adrian Paul Burden , Lei Huang , Xingyu Gao , Andrew Thye Shen Wee , Herbert Oskar Moser
- Applicant: Marian Cholewa , Shu Ping Lau , Gyu-Chul Yi , Jin Kyoung Yoo , Adrian Paul Burden , Lei Huang , Xingyu Gao , Andrew Thye Shen Wee , Herbert Oskar Moser
- Applicant Address: SG Singapore SG Centros KR Kyunbuk-Do SG Singapore
- Assignee: National University of Singapore,Agency for Science, Technology and Research,Pohang University of Science and Technology,Nanyang Technological University
- Current Assignee: National University of Singapore,Agency for Science, Technology and Research,Pohang University of Science and Technology,Nanyang Technological University
- Current Assignee Address: SG Singapore SG Centros KR Kyunbuk-Do SG Singapore
- Agency: Dinsmore & Shohl LLP
- Main IPC: G01N23/00
- IPC: G01N23/00

Abstract:
A radiation detector has an electron emitter that includes a coated nanostructure on a support. The nanostructure can include a plurality of nanoneedles. A nanoneedle is a shaft tapering from a base portion toward a tip portion. The tip portion has a diameter between about 1 nm to about 50 nm and the base portion has a diameter between about 20 nm to about 300 nm. Each shaft has a length between about 100 nm to about 3,000 nm and an aspect ratio larger than 10. A coating covers at least the tip portions of the shafts. The coating exhibits negative electron affinity and is capable of emitting secondary electrons upon being irradiated by radiation. The nanostructure can also include carbon nanotubes (CNTs) coated with a material selected from the group of aluminum nitride (AlN), gallium nitride (GaN), and zinc oxide (ZnO). The detector further includes an electron collector positioned to collect electrons emitted from the electron emitter and to produce a signal indicative of the amount of electrons collected, and a signal processor operatively connected to the electron collector for processing the signal to determine a characteristic of the radiation. The detector can be used to detect radiations of changed particles or light such as X-ray.
Public/Granted literature
- US20060255287A1 Radiation detector having coated nanostructure and method Public/Granted day:2006-11-16
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