TY - JOUR
T1 - Emergence of a Radical-Stabilizing Metal–Organic Framework as a Radio-photoluminescence Dosimeter
AU - Liu, Hanzhou
AU - Qin, Haoming
AU - Shen, Nannan
AU - Yan, Siqi
AU - Wang, Yaxing
AU - Yin, Xuemiao
AU - Chen, Xinjian
AU - Zhang, Chao
AU - Dai, Xing
AU - Zhou, Ruhong
AU - Ouyang, Xiaoping
AU - Chai, Zhifang
AU - Wang, Shuao
N1 - Publisher Copyright:
© 2020 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2020/8/24
Y1 - 2020/8/24
N2 - Radio-photoluminescence (RPL) materials display a distinct radiation-induced permanent luminescence center, and therefore find application in the detection of ionizing radiation. The current inventory of RPL materials, which were discovered by serendipity, has been limited to a small number of metal-ion-doped inorganic materials. Here we document the RPL of a metal–organic framework (MOF) for the first time: X-ray induced free radicals are accumulated on the organic linker and are subsequently stabilized in the conjugated fragment in the structure, while the metal center acts as the X-ray attenuator. These radicals afford new emission features in both UV-excited and X-ray excited luminescence spectra, making it possible to establish linear relationships between the radiation dose and the normalized intensity of the new emission feature. The MOF-based RPL materials exhibit advantages in terms of the dose detection range, reusability, emission stability, and energy threshold. Based on a comprehensive electronic structure and energy diagram study, the rational design and a substantial expansion of candidate RPL materials can be anticipated.
AB - Radio-photoluminescence (RPL) materials display a distinct radiation-induced permanent luminescence center, and therefore find application in the detection of ionizing radiation. The current inventory of RPL materials, which were discovered by serendipity, has been limited to a small number of metal-ion-doped inorganic materials. Here we document the RPL of a metal–organic framework (MOF) for the first time: X-ray induced free radicals are accumulated on the organic linker and are subsequently stabilized in the conjugated fragment in the structure, while the metal center acts as the X-ray attenuator. These radicals afford new emission features in both UV-excited and X-ray excited luminescence spectra, making it possible to establish linear relationships between the radiation dose and the normalized intensity of the new emission feature. The MOF-based RPL materials exhibit advantages in terms of the dose detection range, reusability, emission stability, and energy threshold. Based on a comprehensive electronic structure and energy diagram study, the rational design and a substantial expansion of candidate RPL materials can be anticipated.
KW - dosimeters
KW - metal–organic frameworks
KW - radiation detection
KW - radicals
KW - radio-photoluminescence
UR - https://www.scopus.com/pages/publications/85089609198
U2 - 10.1002/anie.202006380
DO - 10.1002/anie.202006380
M3 - 文章
C2 - 32432349
AN - SCOPUS:85089609198
SN - 1433-7851
VL - 59
SP - 15209
EP - 15214
JO - Angewandte Chemie - International Edition
JF - Angewandte Chemie - International Edition
IS - 35
ER -