Facile pathway to generate agrochemical nanosuspensions integrating super-high load,eco-friendly exc

来源 :纳米研究(英文版) | 被引量 : 0次 | 上传用户:panxi1210
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
An aqueous nanosuspension of agrochemicals unlike pharmaceutics has to achieve massive production in an effective way,capable to ensure sufficient profits in commercialization.This work implements the flash nanoprecipitation (FNP) technique to effectively generate agrochemical nanosuspension,anticipatedly overcoming such an obstacle.Azoxystrobin,a broad spectrum fungicide,in either acetone or ethanol is used herein as a mode agrochemical.To ensure a green and practical utilization,three kinds of commercially available and eco-friendly surfactants,i.e.,poly(ethylene glycol)-b/ock-poly(lactic-co-glycolic acid) (PEG-b-PLGA),Tween 80 and alkyl polyglucosides (APGs),are employed for stabilizing the nanoparticles.The results show that the polymeric stabilizer,PEG-b-PLGA,has the best stabilization efficiency,and can maintain the particles below 100 nm for at least three weeks.The azoxystrobin load of the nanoparticles reaches as high as 77 wt.%,beneficial to enhancing the biological potency.Moreover,the FNP brings the particles a much smaller size,narrower size distribution,better size stability,and higher biological efficacy than the ones made via a traditional method of the drop and stir (DS).The nanosuspensions present superior fungicidal performances over a prevailing counterpart from Syngenta.This study proves an enhanced biological potency and reduced dosage of agrochemical nanosuspension made via the FNP,indicating a remarkable advantage of the FNP over the conventional preparation.The integration of a super-high load,eco-friendly excipients,intensified preparation process,enhanced potency,and reduced dosage creates a promising pathway to generate a green aqueous nanosuspension of agrochemicals.
其他文献
回旋加速器中的超导磁体由于加工和安装误差会在垂直方向上存在偏移现象.该现象导致加速器内磁场偏离设计,影响束流的有效加速.目前测量超导磁体的垂直偏移主要依靠机械测量和力学传感器监控,这些方法只能在工程上确定超导磁体是否对中,而最后的对中效果仍需要通过磁场测量确认.基于中俄正在联合研制的200 MeV超导质子回旋加速器SC200,详细阐述直接利用其中平面平均径向场相对变化计算超导磁体垂直偏移的过程.对比模拟和实验的数据表明,该方法能够将主加速区中平面的平均径向场控制在±1 Gs以内,即实现了超导磁体在垂直方向
针对聚类算法常见的难以确定参数、难以适应各种形状的数据集、在提高算法普适性时时间复杂度增大的问题,提出一种新的聚类算法:结合数据集全局和局部的特征寻找样本点距离的突变位置,通过计算样本点的簇内最小距离实现凸球型数据集的聚类;在此基础上提出子簇连结性强弱的概念,依据两个容易确定的参数进行子簇合并来适应各种形状的数据集.将该算法与DBSCAN (Density-Based Spatial Clustering of Applications with Noise)等多种聚类算法在四种经典数据集上比较,结果表明
由于台风的风速大、湍流活跃,台风过境时会对房屋、桥梁等建筑物造成严重危害.利用2019年8月8日至11日利奇马台风过境浙江时的近地层湍流资料,对利奇马台风的风速、风向、攻角、湍流强度、阵风因子、湍流积分尺度、湍流功率谱特征进行了分析.结果 表明:(1)在台风前期和大风期,随着台风接近,慈溪观测场附近的风速急剧增大,流场主要为偏东气流;在台风后期,随着台风远离观测场,风速迅速减小,风向逐渐由偏东风转为西南风.(2)在台风前期和大风期,攻角、湍流强度和阵风因子都比较小;而在台风后期,攻角、湍流强度和阵风因子都
Thermoelectric (TE) devices can realize the conversion of heat energy and electrical power based on Seebeck effect and Peltier effect.Among them,flexible TE devices have received more attention recently due to their better attachment to various heat sourc
Photocatalysis,via conversion of light into valuable chemicals,is an economic and effective way to utilize inexhaustible solar energy for the sustainable development of our human society.Aiming at killing two birds with one stone,metal nanoparticle (MNP)/
Lung diseases,including COVID-19 and lung cancers,is a huge threat to human health.However,for the treatment and diagnosis of various lung diseases,such as pneumonia,asthma,cancer,and pulmonary tuberculosis,are becoming increasingly challenging.Currently,
The growing concern for the exhaustion of fossil energy and the rapid revolution of electronics have created a rising demand for electrical energy storage devices with high energy density,for example,lithium secondary batteries (LSBs).With high surface ar
Understanding bubbles evolution kinetics on electrodes with varied geometries is of fundamental importance for advanced electrodes design in gas evolution reaction.In this work,the evolution kinetics of electro-generated hydrogen bubbles are recorded in s
Drug-eluting stent (DES) is a promising strategy for esophageal cancer.However,full-covered drug-loaded stents cause damage to non-tumor tissue in the esophagus,and the development controlled-release system to prevent non-tumor tissue injure is currently
Dielectrophoresis (DEP) describes the motion of suspended objects when exposed to an inhomogeneous electric field.It has been successful as a method for parallel and site-selective assembling of nanotubes from a dispersion into a sophisticated device arch