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Lead-free bright yellow emissive Rb2AgCl3 scintillators with nanosecond radioluminescence

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Abstract Scintillators have recently attracted increased attention because of their potential applications in various fields, such as medical imaging, security, and nondestructive inspection. However, the response time of commercial scintillators… Click to show full abstract

Abstract Scintillators have recently attracted increased attention because of their potential applications in various fields, such as medical imaging, security, and nondestructive inspection. However, the response time of commercial scintillators is normally in microseconds or milliseconds only, a property that restricts their practical applications in high-resolution and dynamic X-ray imaging. Here, we report Rb2AgCl3 crystals as an efficient scintillator material with ultrafast response time. The Rb2AgCl3 crystals were found to have a one-dimensional structure and a bright-orange emission peak at 580 nm and a quantum yield of 60.0%. Experimental and computational studies revealed that the strong emission might have originated from self-trapping excitons that resulted into large Stokes shifts and high quantum efficiency. Upon X-ray excitation, the Rb2AgCl3 crystals displayed a fast scintillation decay time of 9.5 ns and achieved a light yield of 18,300 photons MeV−1. The ratio of light yield to decay time could reach up to 1,926 photons MeV−1 ns−1, which was higher than that of existing commercial scintillators. As a scintillator, Rb2AgCl3 crystals are a promising material with potential applications in dynamic real-time imaging with a high spatial resolution owing to its nontoxicity, good stability, high light yield, and short decay time.

Keywords: time; light yield; decay time; rb2agcl3; rb2agcl3 crystals

Journal Title: Journal of Luminescence
Year Published: 2022

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