Gao Jie, Wang Caihong, Tan Hongliang
Key Laboratory of Functional Small Organic Molecule, Ministry of Education, Key Laboratory of Chemical Biology of Jiangxi Province, College of Chemistry and Chemical Engineering, Jiangxi Normal University, Nanchang, 330022, P. R. China.
J Mater Chem B. 2017 Oct 7;5(37):7692-7700. doi: 10.1039/c7tb02049j. Epub 2017 Sep 8.
This work demonstrated the potential of lanthanide/nucleotide coordination polymers as a host platform for encapsulating enzymes and fluorescent nanoparticles to fabricate multifunctional composites. The self-adaptive assembly of terbium ions (Tb), adenosine monophosphate (AMP), glucose oxidase (GOx), and carbon dots (CDs) leads to the formation of a GOx&CDs@AMP/Tb composite with catalytic and fluorescence properties. Owing to the confinement effect, the GOx&CDs@AMP/Tb composite exhibited about 2-fold higher catalytic activity than free GOx. Meanwhile, significantly enhanced storage stability and negligible leakage of GOx were also achieved. On this basis, by considering the advantages of carboxyphenylboronic acid (CPBA) in the sensitization of Tb fluorescence and specific recognition of hydrogen peroxide, a dual-emissive GOx&CDs@AMP/Tb-CPBA composite was further fabricated for the ratiometric sensing of glucose. Benefiting from the synergistic effect of GOx and CDs in the highly efficient transfer of intermediates and the elimination of environmental fluctuations, the presented ratiometric sensor not only displayed an ultrahigh sensitivity with a detection limit of 80 nM, but also allowed glucose to be easily identified by the naked eye under a UV lamp. We hope that this study will provide a new insight into the design and application of coordination polymer-based multifunctional composites.
这项工作展示了镧系元素/核苷酸配位聚合物作为一种主体平台的潜力,可用于封装酶和荧光纳米颗粒以制备多功能复合材料。铽离子(Tb)、单磷酸腺苷(AMP)、葡萄糖氧化酶(GOx)和碳点(CDs)的自适应组装导致形成具有催化和荧光特性的GOx&CDs@AMP/Tb复合材料。由于限域效应,GOx&CDs@AMP/Tb复合材料表现出比游离GOx高约2倍的催化活性。同时,还实现了显著提高的储存稳定性以及GOx可忽略不计的泄漏。在此基础上,考虑到羧基苯硼酸(CPBA)在铽荧光敏化和过氧化氢特异性识别方面的优势,进一步制备了用于葡萄糖比率传感的双发射GOx&CDs@AMP/Tb-CPBA复合材料。受益于GOx和CDs在中间体高效转移和消除环境波动方面的协同效应,所展示的比率传感器不仅具有80 nM的超低检测限,表现出超高灵敏度,而且在紫外灯下通过肉眼就能轻松识别葡萄糖。我们希望这项研究将为基于配位聚合物的多功能复合材料的设计和应用提供新的见解。