Application of silicon nanoparticles in agriculture
Применение кремниевых наночастиц в сельском хозяйстве
2019-02-18
SCID: 54.1/3ugsr654
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agricultural productivitymesoporous nanocarriersplant growthplant metabolismsilicon nanoparticles
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Abstract (AI)
The beneficial effects of silicon and its role for plants are well established; however, the advantages of silicon nanoparticles over its bulk material are an area that is less explored. Silicon nanoparticles have distinctive physiological characteristics that allow them to enter plants and influence plant metabolic activities. The mesoporous nature of silicon nanoparticles also makes them good candidates as suitable nanocarriers for different molecules that may help in agriculture. Several studies have shown the importance of silicon nanoparticles in agriculture, but an overview of the related aspects was missing. Therefore, this review brings together the literature on silicon nanoparticles and discusses the impact of silicon nanoparticles on several aspects of agricultural sciences. The review also discusses the future application of silicon nanoparticles in plant growth, plant development, and improvement of plant productivity.
Key Findings
1
Existing studies indicate that silicon nanoparticles affect multiple aspects of agricultural science, although their advantages over bulk silicon remain insufficiently explored.
2
Silicon nanoparticles possess distinctive physiological characteristics that enable plant entry and influence plant metabolic activities.
3
The review consolidates literature on silicon nanoparticles and highlights prospective applications in plant growth, development, and productivity improvement.
4
Their mesoporous structure makes silicon nanoparticles suitable nanocarriers for delivering molecules with potential agricultural benefits.
Research Object
silicon nanoparticles in agricultural plants and systems
Research Subject
their physiological and metabolic effects, nanocarrier applications, and impacts on plant growth, development, and productivity
Publication Details
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2019-02-18
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