State Key Laboratory of Green Pesticide, International Joint Research Center for Intelligent Biosensing Technology and Health, College of Chemistry, Central China Normal University, Wuhan 430079, People's Republic of China.
Institute of Modern Physics, Chinese Academy of Science, Lanzhou 730000, People's Republic of China.
Nano Lett. 2024 Aug 7;24(31):9635-9642. doi: 10.1021/acs.nanolett.4c02394. Epub 2024 Jul 30.
Natural phosphatases featuring paired metal sites inspire various advanced nanozymes with phosphatase-like activity as alternatives in practical applications. Numerous efforts to create point defects show limited metal site pairs, further resulting in insufficient activity. However, it remains a grand challenge to accurately engineer abundant metal site pairs in nanozymes. Herein, we report a grain-boundary-rich ceria metallene nanozyme (GB-CeO) with phosphatase-like activity. Grain boundaries acting as the line or interfacial defects can effectively increase the content of Ce/Ce site pairs to 72.28%, achieving a 49.28-fold enhancement in activity. Furthermore, abundant grain boundaries optimize the band structure to assist the photoelectron transfer under irradiation, which further increases the content of metal site pairs to 88.96% and finally realizes a 114.39-fold enhanced activity over that of CeO without irradiation. Given the different inhibition effects of pesticides on catalysts with and without irradiation, GB-CeO was successfully applied to recognize mixed toxic pesticides.
具有配对金属位点的天然磷酸酶激发了各种具有磷酸酶样活性的先进纳米酶作为实际应用中的替代品。为了创造点缺陷,人们付出了大量努力,但金属位点对的数量有限,导致活性不足。然而,在纳米酶中准确地工程化丰富的金属位点对仍然是一个巨大的挑战。在此,我们报告了一种具有类金属铈的富含晶界的氧化铈纳米酶(GB-CeO),具有类磷酸酶的活性。晶界作为线或界面缺陷,可以有效地将 Ce/Ce 位点对的含量增加到 72.28%,活性提高了 49.28 倍。此外,丰富的晶界优化了能带结构,有助于在辐照下促进光电子转移,从而将金属位点对的含量进一步提高到 88.96%,最终实现了无辐照时 CeO 的 114.39 倍的活性增强。鉴于农药对有辐照和无辐照催化剂的不同抑制作用,GB-CeO 成功地应用于识别混合有毒农药。