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Metal-phenolic coated rod-like silica nanocarriers with pH responsiveness for pesticide delivery
Entrapping pesticides in carriers would be beneficial to reduce the risk to environmental safety caused by the heavy use of pesticides. In this paper, hollow silica (hSiO 2 ) nanorods were synthesized by sodium carbonate etching silica nanorods. The prepared hSiO 2 nanocarriers have an average diameter of 100 nm and 200 nm in length, and possess good biocompatibility. Compared with spherical silica carriers, the LCH of hSiO 2 carrier was increased by 35 %. After loading dinotefuran (DNF) pesticide, tannic acid-Cu complexes (TA/Cu) were coated to block the loaded DNF ( [email protected] 2 @TA/Cu). Compared with free DNF, the half-life of DNF entrapped in hSiO 2 carriers was extended by about 10 times under UV irradiation . The [email protected] 2 @TA/Cu system displays excellent wettability to cucumber leaves and good inhibitory effect on Penicillium and diamondback moth. The [email protected] 2 @TA/Cu system displays pH-responsive release. This work provides an efficient nanoplatform for effective utilization of pesticides.