Key Laboratory of Analytical Science and Technology of Hebei Province, College of Chemistry and Materials Science, Hebei University, Baoding, 071002, PR China.
Key Laboratory of Analytical Science and Technology of Hebei Province, College of Chemistry and Materials Science, Hebei University, Baoding, 071002, PR China.
Anal Chim Acta. 2024 Aug 29;1319:342980. doi: 10.1016/j.aca.2024.342980. Epub 2024 Jul 14.
The traditional preparation method of ratiometric probes faces challenges such as cumbersome preparation and low sensitivity. Thus, there is an urgent need to provide a simple method of preparing a highly sensitive ratiometric probe. Here, Eu-doped zinc-based organic framework (Eu/Zn-MOF) was prepared through hydrothermal method for the detection of tetracycline analogs (TCs). Under the same excitation conditions, the probe can simultaneously display valuable fluorescence and second-order scattering signals. The developed probe enabled specific identification and fast detection (1 min) of TCs, including tetracycline, oxytetracycline, doxycycline, and chlortetracycline. The linear detection ranges of tetracycline, oxytetracycline, doxycycline and chlortetracycline were respectively 100 nM - 200 μM, 100 nM - 200 μM, 98 nM - 195 μM, and 97 nM - 291 μM, and the corresponding detection limits were respectively 15.79 nM, 20.83 nM, 15.31 nM, and 28.30 nM. The developed sensor was successfully applied to detect TCs in real samples, and the recovery rate was from 92.54 % to 109.69 % and the relative standard deviation was from 0.04 % to 2.97 %. Moreover, the heterometallic Eu/Zn-MOF was designed as a ratiometric neuron for Boolean logic computing and information encryption based on the specific identification of TCs. As a proof of concept, molecular steganography was successfully employed to encode, store, and conceal information by transforming the specific identification patterns of Eu/Zn-MOF into binary strings. This study is anticipated to advance the application of metal-organic frameworks in logic detection and information security, and bridging the gap between molecular sensors and the realm of information.
传统的比率探针制备方法面临着制备繁琐和灵敏度低等挑战。因此,迫切需要提供一种简单的方法来制备高灵敏度的比率探针。在这里,通过水热法制备了 Eu 掺杂的锌基有机骨架(Eu/Zn-MOF),用于检测四环素类似物(TCs)。在相同的激发条件下,探针可以同时显示有价值的荧光和二阶散射信号。所开发的探针能够特异性识别和快速检测(1 分钟)TCs,包括四环素、土霉素、强力霉素和金霉素。四环素、土霉素、强力霉素和金霉素的线性检测范围分别为 100 nM - 200 μM、100 nM - 200 μM、98 nM - 195 μM 和 97 nM - 291 μM,相应的检测限分别为 15.79 nM、20.83 nM、15.31 nM 和 28.30 nM。所开发的传感器成功应用于检测实际样品中的 TCs,回收率为 92.54%至 109.69%,相对标准偏差为 0.04%至 2.97%。此外,基于对 TCs 的特异性识别,将异金属 Eu/Zn-MOF 设计为比率神经元,用于布尔逻辑计算和信息加密。作为概念验证,成功地通过将 Eu/Zn-MOF 的特异性识别模式转换为二进制字符串,实现了分子隐写术对信息的编码、存储和隐藏。本研究有望推动金属-有机骨架在逻辑检测和信息安全中的应用,并弥合分子传感器和信息领域之间的差距。