Fabrication of an Environmentally Friendly 2D MXene‐Avermectin Hybrid Nanopesticide for Use Against Spodoptera Frugiperda

Fabrication of an Environmentally Friendly 2D MXene‐Avermectin Hybrid Nanopesticide for Use Against Spodoptera Frugiperda
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用于对抗草地贪夜蛾的环保型二维 MXene 与阿维菌素混合纳米农药的制备

DOI:
10.1002/slct.202200995
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发表时间:
2022-08
期刊:
影响因子:
2.1
通讯作者:
Tiedong Sun
Tiedong Sun
中科院分区:
化学4区
文献类型:
--
作者:
Zhaocong Zhang;Yangtian Shi;Chengwen Ding;Yutong Lv;Meiting Wang;Yuan Sun;Tiedong Sun

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MXenes家族是一种新型的二维(2D)材料,由于其优异的光热和负载性能,已广泛应用于癌症治疗、成像、传感和电化学等许多领域。本文报道了一种Ti 3C 2纳米片(MXene)作为杀虫剂的载体。通过将最广泛使用的杀虫物质阿维菌素吸附到MXene(MXene@AV)上来配制纳米复合材料。它充分利用了MXene的负载和光热能力以及阿维菌素的广谱杀虫特性,提供了一种更有效、更环保的替代品。结果表明,MXene@AV具有良好的稳定性和光热性能,光热转换效率高达39.84%。光热触杀与毒杀相结合,对常见害虫草地贪夜蛾表现出较强的杀伤力和持续的药效。因此,以MXene为载体的杀虫剂MXene@AV具有应用于农业害虫防治的潜力。
MXenes family are novel two‐dimensional (2D) materials that have been widely used in many fields such as cancer therapy, imaging, sensing, and electrochemistry due to their excellent photothermal and loading properties. Herein, A Ti3C2nanosheets (MXene) as a carrier for insecticide was reported. Nanocomposites were formulated by adsorbing the most widely used insecticidal substance, avermectin, onto MXene (MXene@AV). It takes full advantage of the loading and photothermal capabilities of MXene and the broad‐spectrum insecticidal properties of avermectin to provide a more efficient and environmentally friendly alternative. The results show that MXene@AV exhibits excellent stability and photothermal capability, with a photothermal conversion efficiency as high as 39.84 %. The combination of photothermal contact killing and poisoning enables it to show strong lethality and sustained efficacy against the common pestSpodoptera frugiperda. Therefore, MXene@AV, an insecticide with MXene as a carrier, has the potential to be applied to agricultural pest control.
通过光热消融,MXene 和近红外光快速消灭抗生素耐药细菌和生物膜
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