Liu Xuexue, Zhang Xiang, Chen Jian, Zhang Changhao, Feng Songke, Zhang Weiguo
College of Mechanical and Electronic Engineering, Northwest A&F University, Yangling, Shaanxi, 712100, People's Republic of China.
Nanotechnology. 2022 May 17;33(32). doi: 10.1088/1361-6528/ac6bb0.
Dendritic fibrous nanosilica (DFNS) is a suitable nano-carrier for loading pesticides with radially oriented pores and a large surface area. The microemulsion method is standard method to prepare DFNS, and 1-pentanol is taken to replace cyclohexane as an oil solvent due to its high stability and nontoxic property. The results showed that the volume ratio of 1-pentanol (oil) to water (O/W) and the molar ratio of hexadecyltrimethylammonium bromide (CTAB) to tetraethylorthosilicate (TEOS) had effected on morphology and adsorption properties of DFNS in the water-CTAB-1-pentanol-ethanol-trimethylbenzene (TMB) microemulsion system. DFNS with bicontinuous concentric lamellar morphologies can be synthesized in this microemulsion at the meager O/W volume ratio (0.025-0.045). It features a tight mesoporous structure with a thin dendritic fibrous in 0.03 to 0.04 O/W volume ratio. The particle sizes, surface areas, and porosity of DFNS were positively correlated with the addition of the silica precursor TEOS. The size of DFNS increased from 123 to about 220 nm with the CTAB/TEOS molar ratio decreasing from 0.119 to 0.050. When the molar ratio of CTAB to TEOS = 0.119, DFNS has a smaller particle size (123 nm) with a larger surface area and abundant honeycomb mesopores; the low O/W volume ratio strategy provides theoretical support for the industrialization development of DFNS and nano-pesticides, which plays a profound role in promoting the sustainable development of pesticide reduction, efficiency and green agriculture.
树枝状纤维纳米二氧化硅(DFNS)是一种适合负载农药的纳米载体,具有径向排列的孔隙和较大的表面积。微乳液法是制备DFNS的标准方法,由于1-戊醇具有高稳定性和无毒特性,因此用它来替代环己烷作为油相溶剂。结果表明,在水-十六烷基三甲基溴化铵(CTAB)-1-戊醇-乙醇-均三甲苯(TMB)微乳液体系中,1-戊醇(油相)与水的体积比(O/W)以及CTAB与正硅酸乙酯(TEOS)的摩尔比对DFNS的形貌和吸附性能有影响。在较低的O/W体积比(0.025 - 0.045)下,可在该微乳液中合成具有双连续同心层状形貌的DFNS。在O/W体积比为0.03至0.04时,其具有紧密的介孔结构和细小的树枝状纤维。DFNS的粒径、表面积和孔隙率与二氧化硅前驱体TEOS的添加量呈正相关。随着CTAB/TEOS摩尔比从0.119降至0.050,DFNS的粒径从123 nm增大至约220 nm。当CTAB与TEOS的摩尔比 = 0.119时,DFNS具有较小的粒径(123 nm)、较大 的表面积和丰富的蜂窝状介孔;低O/W体积比策略为DFNS和纳米农药的产业化发展提供了理论支持,对推动农药减量、增效及绿色农业的可持续发展具有深远意义。