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Critical analysis of biophysicochemical parameters for qualitative improvement of phytogenic nanoparticles

机译:生物物理学参数对植物植物纳米粒子的定性改进的关键分析

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摘要

Conventional chemical approaches for synthesizing nanoparticles (NPs) may restrict their applicability as they are not eco-friendly, energetically efficient and often involve toxic reducing/capping agents; but phytonanotechnology enabled the synthesis of safe, inexpensive, highly biocompatible NPs. In this regard, thorough understanding of green components and the modulatory effects of different reaction conditions on the physicochemical parameters of green synthesized NPs would be a prerequisite, which is not depicted elsewhere. This review critically analyzes the relevant reaction conditions from their mechanistic viewpoints in plant-based synthesis of NPs arising fundamental issues which need to be determined carefully. The size, stability and surface chemistry of phytogenic NPs may be fabricated as a function of multiple interconnected reaction parameters and the plant species used. The therapeutic potential of phytogenic NPs may depend on the plant species used; and so the meticulous understanding of physicochemical parameters and the family wise shorting of elite plant species may potentially benefit the theranostic future of plant-based NPs.
机译:合成纳米颗粒(NPS)的常规化学方法可以限制它们的适用性,因为它们不是生态友好,积极高效,并且通常涉及有毒的还原/封盖剂;但植物单位技术使能安全,廉价,高度生物相容性的NPS的合成。在这方面,彻底了解绿色合成NPS物理化学参数对绿色成分的彻底理解和不同反应条件的调节效应将是在其他地方描述的先决条件。本综述重点分析了在基于植物的基于NPS的机制观点来分析了相关的反应条件,这引起了需要仔细确定的基本问题。植物植物的尺寸,稳定性和表面化学物质可以作为多种互连的反应参数和所用植物物种制造的。植物植物的治疗潜力可取决于所用的植物物种;因此,对物理化学参数的细致理解和精英植物物种的缺乏可能会使植物基于植物NPS的治疗未来有益。

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