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Whether the Microemulsion is a Nano-pesticide: Exploration from the Perspective of Particle Size and Morphology
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作者 Jingli CHENG Wenlong LIANG +2 位作者 Jiadong ZHANG Qiuyu XIONG Jinhao ZHAO 《Plant Diseases and Pests》 CAS 2022年第6期19-23,共5页
[Objectives] The paper was to explore whether the microemulsion is a nano-pesticide. [Methods] Several microemulsions commonly available on the market were studied from the perspective of particle size and morphologic... [Objectives] The paper was to explore whether the microemulsion is a nano-pesticide. [Methods] Several microemulsions commonly available on the market were studied from the perspective of particle size and morphological characteristics. With ZIF nano-pesticide prepared earlier as the control, the changes in particle size of microemulsions diluted at different concentrations and the microscopic morphology of dispersed particles were tested and compared by dynamic light scattering laser particle size analyzer combined with scanning electron microscope. [Results] Conventional microemulsions were in dynamic equilibrium, and the particle size changed irregularly after dilution at different concentrations. Especially under scanning electron microscope, the particle distribution of pesticide-bearing droplets were uneven after drying, with aggregation and precipitation of large particles, while the particle size of nano-pesticide changed little after dilution at different concentrations, ranging from 1 to 300 nm. Moreover, the microscopic morphology of nano-pesticide observed under scanning electron microscope was in monodisperse nano state, without aggregation. [Conclusions] The particle size measured by dynamic light scattering alone can not judge whether the microemulsion is a nanometer pesticide, and it is necessary to observe the microscopic disperse state and particle size distribution with the help of electron microscopy. 展开更多
关键词 nano-pesticide MICROEMULSION Particle size distribution Dynamic light scattering MORPHOLOGY Scanning electron microscope
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Long-lasting growth regulation on cotton using mepiquat chloride adsorbed layered double hydroxide
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作者 Chong Wang Changcheng An +5 位作者 Ningjun Li Changjiao Sun Yue Shen Shenshan Zhan Xingye Li Yan Wang 《Advanced Agrochem》 2024年第1期57-63,共7页
Mepiquat chloride(1,1-dimethyl piperidinium chloride,DPC)is a representative plant growth regulator which can regulate the source-sink relationship for yield increase and shape ideal plant type for mechanical cultivat... Mepiquat chloride(1,1-dimethyl piperidinium chloride,DPC)is a representative plant growth regulator which can regulate the source-sink relationship for yield increase and shape ideal plant type for mechanical cultivation.Here we show a DPC adsorbed layered double hydroxide(DPC-LDH)architecture with enhanced controlled release property and soil distribution.By drip irrigation on cotton,it makes total dosage of DPC reduced from 270 to 90 g/ha,while the frequency decreased from 5 to 2 times.The unique supramolecular interaction is confirmed as the basis of controlled release behavior.Moreover,except for the physical resistance to the sedimentation brought by the lamellar LDH,the enhanced electrostatic interaction makes DPC-LDH the dominant distribution in soil.It improves the efficiency of DPC molecules absorbed by cotton plants and greatly saves the inputs in labor and chemicals.This method is expected to achieve the yield increase and agricultural sustainability by energy saving and emission reduction. 展开更多
关键词 Layered double hydroxide Plant growth regulation Controlled release CO2 emission reduction nano-pesticide
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