Ultrafast recrystallisation simplifies the synthesis of lanthanide-based metal halide scintillators

An advancement in the fast synthesis of lanthanide-based metal halides at room temperature is proposed and demonstrated. The reported Cs3LnCl6 scintillators are potential candidates in X-ray imaging by providing a safer, more efficient, and environmentally benign alternative to address the long-stan...

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Main Authors: Bing Chen, Feng Wang
Format: Article
Language:English
Published: Light Publishing Group 2025-08-01
Series:Light: Advanced Manufacturing
Subjects:
Online Access:https://www.light-am.com/article/doi/10.37188/lam.2025.037
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author Bing Chen
Feng Wang
author_facet Bing Chen
Feng Wang
author_sort Bing Chen
collection DOAJ
description An advancement in the fast synthesis of lanthanide-based metal halides at room temperature is proposed and demonstrated. The reported Cs3LnCl6 scintillators are potential candidates in X-ray imaging by providing a safer, more efficient, and environmentally benign alternative to address the long-standing concerns about toxicity and fabrication complexities of existing scintillators.
format Article
id doaj-art-7dca9ee7f94f4e1986db750418bcee01
institution Kabale University
issn 2689-9620
language English
publishDate 2025-08-01
publisher Light Publishing Group
record_format Article
series Light: Advanced Manufacturing
spelling doaj-art-7dca9ee7f94f4e1986db750418bcee012025-08-20T03:45:10ZengLight Publishing GroupLight: Advanced Manufacturing2689-96202025-08-016219720010.37188/lam.2025.037Ultrafast recrystallisation simplifies the synthesis of lanthanide-based metal halide scintillatorsBing Chen0Feng WangCollege of Electronic and Optical Engineering and College of Flexible Electronics (Future Technology), Nanjing University of Posts and Telecommunications, Nanjing 210023, ChinaAn advancement in the fast synthesis of lanthanide-based metal halides at room temperature is proposed and demonstrated. The reported Cs3LnCl6 scintillators are potential candidates in X-ray imaging by providing a safer, more efficient, and environmentally benign alternative to address the long-standing concerns about toxicity and fabrication complexities of existing scintillators.https://www.light-am.com/article/doi/10.37188/lam.2025.037lanthanidemetal halideantisolventscintillator
spellingShingle Bing Chen
Feng Wang
Ultrafast recrystallisation simplifies the synthesis of lanthanide-based metal halide scintillators
Light: Advanced Manufacturing
lanthanide
metal halide
antisolvent
scintillator
title Ultrafast recrystallisation simplifies the synthesis of lanthanide-based metal halide scintillators
title_full Ultrafast recrystallisation simplifies the synthesis of lanthanide-based metal halide scintillators
title_fullStr Ultrafast recrystallisation simplifies the synthesis of lanthanide-based metal halide scintillators
title_full_unstemmed Ultrafast recrystallisation simplifies the synthesis of lanthanide-based metal halide scintillators
title_short Ultrafast recrystallisation simplifies the synthesis of lanthanide-based metal halide scintillators
title_sort ultrafast recrystallisation simplifies the synthesis of lanthanide based metal halide scintillators
topic lanthanide
metal halide
antisolvent
scintillator
url https://www.light-am.com/article/doi/10.37188/lam.2025.037
work_keys_str_mv AT bingchen ultrafastrecrystallisationsimplifiesthesynthesisoflanthanidebasedmetalhalidescintillators
AT fengwang ultrafastrecrystallisationsimplifiesthesynthesisoflanthanidebasedmetalhalidescintillators