Advanced Optical Materials | Cas: 89-73-6 was involved in experiment

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Chen, Zi;Lu, Dongdong;Xie, Hangqing;Yang, Xiaolei;Li, Yang;Bao, Chenhao;Lei, Lei;Xu, Shiqing published 《Triplet Exciton Enhanced Radioluminescence of Ga3+/Tb3+ Metallacrown Scintillators for X-Ray Detection》. The research results were published in《Advanced Optical Materials》 in 2022.Recommanded Product: N,2-Dihydroxybenzamide The article conveys some information:

The increasing demand for radiation detection in many applications has led to demanding requirements for scintillators. Realizing low-dose, pollution-free, and reliable X-ray detection has become a key tech. challenge. Here, a triplet-enhanced lanthanide radioluminescence (RL) material Ga3+/Tb3+ metallacrowns (Tb-1) is reported. This Tb-1 crystal emits bright green luminescence under UV light or X-ray excitation, and the emission intensity is 286 and 242 times that of Tb3+ in inorganic salt, resp. Tb-1 crystal is further passivated by trioctylphosphine oxide (TOPO), and the enhanced RL intensity is equivalent to that of com. Tl-doped cesium iodide scintillator. In addition, RL of Tb-1-TOPO has an extremely narrow full width at half maximum and an excellent linear response to the X-ray dose rate. The detection limit is calculated to be 0.146μGy s-1, which is 38 times lower than typical medical imaging doses. Triplet-enhanced lanthanide RL provides new ideas for replacing scintillators that require high temperature synthesis processes such as inorganic phosphors and ceramics, and provides a new alternative scintillator material for flexible X-ray monitoring, bioimaging, radiotherapy, and other applications. To complete the study, the researchers used N,2-Dihydroxybenzamide (cas: 89-73-6) .

N,2-Dihydroxybenzamide(cas: 89-73-6) is widely used for a variety of roles in biology and medicine as a chelating therapy.Recommanded Product: N,2-DihydroxybenzamideIt inhibits bacterial or fungi growth by interfering with iron uptake. It is also active as a inhibitor of enzyme involved in tumour growths.

Reference:
Amide – Wikipedia,
Amide – an overview | ScienceDirect Topics