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Emerging Zero-Dimensional Organic Metal Halide Hybrids for X-ray Scintillation and Direct Detection

delete2026-02-09
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PRE
AI
T
Tarannuma Ferdous Manny
O
Oluwadara Joshua Olasupo
S
Sahel Moslemi
M
Mohammad Khizr
K
Kumudu Rajapaksha
W
Wanyi Nie
Z
Zhonghui Chen
B
Biwu Ma *
DOI:10.1021/acsenergylett.5c03367delete
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Abstract

Abstract

En 中文
The growing demand for advanced radiation detection technologies in healthcare, homeland security, nuclear safety, industrial monitoring/testing, and scientific research calls for materials that combine high performance, robustness, and scalability. Zero-dimensional (0D) organic metal halide hybrids (OMHHs) have recently emerged as a transformative class of functional materials suitable for both scintillation-based and direct X-ray detection. Their ionically bonded structures and rich organic–inorganic chemistry enable exceptional tunability of physical and chemical properties, as well as remarkable compatibility with diverse processing methods. In this Perspective, we highlight key advances in the structural design and functional integration of 0D OMHHs, summarize major milestones in their X-ray scintillation and direct detection performance, and discuss emerging strategies in materials engineering and device integration. We further outline the challenges and opportunities that will shape the future of 0D OMHHs as a versatile platform for next-generation radiation-scintillation and direct-detection technologies.
Keywords:
Halogens
Inorganic compounds
Metals
Perovskites
X-rays

Journal

ACS Energy Letters cover
ACS Energy Letters
IF:
18.2
Papers:
5.2K
Citations:
6.6W

Organization

R
roentgen matters llc
Scholars:
1
Papers: 1
Citations: 0
U
university at buffalo
Scholars:
329
Papers: 140
Citations: 0
F
Florida State University
Scholars:
1.1W
Papers: 8.6K
Citations: 2.0W
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