Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), College of Chemistry and Molecular Sciences, Wuhan University , Wuhan 430072, Hubei Province, P. R. China.
ACS Appl Mater Interfaces. 2016 Aug 10;8(31):20407-14. doi: 10.1021/acsami.6b06436. Epub 2016 Jul 28.
A novel core-shell heterostructure of CuxO nanoparticles@zeolitic imidazolate framework (CuxO NPs@ZIF-8) was successfully prepared through facile pyrolysis of a nanocrystalline copper-based metal-organic framework [nHKUST-1, i.e., Cu3(BTC)2 (BTC = 1,3,5-benzene-tricarboxylate)]@ZIF-8, based on the different thermal stability of the two metal-organic frameworks (MOFs). The small CuxO NPs derived from nHKUST-1 were uniformly dispersed inside the host material and provided active sites, while ZIF-8 kept the original structure as the molecular sieving shell. Owing to the proper pore shape and pore size of ZIF-8, H2O2 could diffuse through the shell, but bigger molecules could not pass. Thus, the composite material exhibited high selectivity when it was used to construct a H2O2 sensor. In addition, the sensor showed an extended linear detection range (from 1.5 to 21442 μM), low detection limit (0.15 μM), and high sensitivity, due to the good electrocatalysis of CuxO NPs and the synergistic effect of the core-shell structure.
通过简便的热解法,利用两种金属有机骨架(MOFs)的不同热稳定性,成功制备了新型 CuxO 纳米粒子@沸石咪唑酯骨架(CuxO NPs@ZIF-8)核壳异质结构。纳米晶铜基金属有机骨架 [nHKUST-1,即 Cu3(BTC)2(BTC=1,3,5-苯三甲酸)]@ZIF-8 先转化为 CuxO NPs@ZIF-8 核壳结构,然后再分解为 CuxO NPs@ZIF-8。源于 nHKUST-1 的小尺寸 CuxO NPs 均匀分散在主体材料内部,提供了活性位点,而 ZIF-8 则保持了原始结构作为分子筛壳。由于 ZIF-8 具有适当的孔形状和孔径,H2O2 可以通过外壳扩散,但较大的分子无法通过。因此,当用于构建 H2O2 传感器时,复合材料表现出高选择性。此外,由于 CuxO NPs 的良好电催化作用和核壳结构的协同效应,该传感器具有扩展的线性检测范围(从 1.5 到 21442 μM)、低检测限(0.15 μM)和高灵敏度。