Gundogdu Selin Oyku, Saglam Ozgur, Isikber Ali Arda, Bozkurt Huseyin, Unal Hayriye
Faculty of Engineering and Natural Sciences, Sabanci University, Istanbul 34956, Turkey.
SUNUM Nanotechnology Research Center, Sabanci University, Istanbul 34956, Turkey.
ACS Omega. 2024 Feb 20;9(9):10380-10390. doi: 10.1021/acsomega.3c08015. eCollection 2024 Mar 5.
A controlled release system that enables the sunlight-triggered release of a model agrochemical, abamectin (abm), is presented. The release system consists of polydopamine functionalized halloysite nanotubes (HNT-PDA) utilized as photothermal nanocarriers to encapsulate 25 wt % abm and 37 wt % lauric acid (LA), a phase change material, that acts as a heat-activable gatekeeper stopping or facilitating the abm release. When exposed to sunlight for 20 min at 1 and 3 sun light density, the temperature of the photothermal nanocarriers reaches 51 and 122 °C, respectively, which triggers the melting of LA and the consequent release of abm from the nanocarriers. Abm was shown to be released gradually over a period of 10 days when nanohybrids were exposed to sunlight for 6 h per day and to remain stable and kill (Sulzer) (Hemiptera: Aphididae), green peach aphids, at a mortality rate of over 70% for at least 10 days. Aqueous dispersions of the LA/abm@HNT-PDA nanohybrids were studied in terms of their potential as aqueous sprayable pesticide nanoformulations and presented over 30% suspensibility, 36 mg/cm foliar retention, strong rainwater resistance, and a 50% mortality rate for at a concentration of 9 mg/mL. The proposed sunlight-activated controlled release system based on photothermal, LA-functionalized HNT-PDA nanocarriers holds great potential as controlled release pesticide nanoformulations.
本文介绍了一种能够实现阳光触发释放模型农药阿维菌素(abm)的控释系统。该释放系统由聚多巴胺功能化的埃洛石纳米管(HNT-PDA)组成,用作光热纳米载体,以封装25 wt%的阿维菌素和37 wt%的月桂酸(LA),月桂酸作为一种相变材料,充当热激活的守门人,阻止或促进阿维菌素的释放。当在1和3个太阳光强度下暴露于阳光下20分钟时,光热纳米载体的温度分别达到51和122°C,这触发了月桂酸的熔化以及随后阿维菌素从纳米载体中的释放。当纳米杂化物每天暴露于阳光下6小时时,阿维菌素在10天内逐渐释放,并保持稳定,对桃蚜(半翅目:蚜科)的致死率至少在70%以上,持续至少10天。对LA/abm@HNT-PDA纳米杂化物的水分散体作为可水喷雾农药纳米制剂的潜力进行了研究,结果表明其具有超过30%的悬浮性、36 mg/cm的叶面滞留率、很强的耐雨水性,在浓度为9 mg/mL时对桃蚜的致死率为50%。所提出的基于光热、LA功能化HNT-PDA纳米载体的阳光激活控释系统作为控释农药纳米制剂具有巨大潜力。