Shams Saira, Ahmad Waqas, Memon Amjad Hussain, Wei Yun, Yuan Qipeng, Liang Hao
State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology Beisanhuan Donglu 15 Hao Beijing 100029 P. R. China
RSC Adv. 2019 Dec 10;9(70):40845-40854. doi: 10.1039/c9ra07473b. eCollection 2019 Dec 9.
Herein, we report an effectual method for designing a novel form of nanozyme laccase mimic namely Cu/HBTC, using copper ions and 1,3,5-benzene tricarboxylic acid (1,3,5-HBTC). This Cu-based metal-organic framework (MOF) was synthesized through a simple procedure of mixing of two usual reagents at room temperature. Amido Black 10B (AB-10B) was chosen as a model dye for degradation consequences. Results showed that Cu/HBTC MOF revealed significantly higher catalytic efficacy under certain conditions like high pH, extreme temperature and high salt conditions and it has long-term storage stability, which can lead to a significant decline in catalytic activity of laccase. In addition, the degradation of AB-10B was up to 60% after ten cycles, showing good recyclability of Cu/HBTC MOF. The UV-visible spectral changes clearly showed that Cu/HBTC MOF is an effective laccase mimic for the degradation of azo dye AB-10B, which was degraded more easily within the time duration of 60 min. The Cu/HBTC MOF also possessed fundamental activities like laccase with regard to oxidation of the phenolic compounds. Moreover, a technique for the quantitative detection of epinephrine by Cu/HBTC MOF was established. These findings help to understand the laccase-like reactivity and provide a basis for the future design and application of metal-based catalysts.
在此,我们报道了一种有效的方法,即使用铜离子和1,3,5-苯三甲酸(1,3,5-HBTC)设计一种新型的纳米酶漆酶模拟物Cu/HBTC。这种基于铜的金属有机框架(MOF)是通过在室温下将两种常用试剂简单混合的过程合成的。选择氨基黑10B(AB-10B)作为降解效果的模型染料。结果表明,Cu/HBTC MOF在高pH、极端温度和高盐条件等特定条件下显示出显著更高的催化效率,并且具有长期储存稳定性,这可能导致漆酶的催化活性显著下降。此外,经过十次循环后,AB-10B的降解率高达60%,表明Cu/HBTC MOF具有良好的可回收性。紫外可见光谱变化清楚地表明,Cu/HBTC MOF是一种用于降解偶氮染料AB-10B的有效漆酶模拟物,AB-10B在60分钟的时间内更容易降解。Cu/HBTC MOF在酚类化合物氧化方面也具有类似漆酶的基本活性。此外,还建立了一种利用Cu/HBTC MOF定量检测肾上腺素的技术。这些发现有助于理解类似漆酶的反应性,并为未来金属基催化剂的设计和应用提供依据。