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A Guideline for Effectively Synthesizing and Characterizing Magnetic Nanoparticles for Advancing Nanobiotechnology: A Review

机译:有效合成和表征磁性纳米颗粒以促进纳米生物技术的指南:综述

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摘要

The remarkable multimodal functionalities of magnetic nanoparticles, conferred by their size and morphology, are very important in resolving challenges slowing the progression of nanobiotechnology. The rapid and revolutionary expansion of magnetic nanoparticles in nanobiotechnology, especially in nanomedicine and therapeutics, demands an overview of the current state of the art for synthesizing and characterizing magnetic nanoparticles. In this review, we explain the synthesis routes for tailoring the size, morphology, composition, and magnetic properties of the magnetic nanoparticles. The pros and cons of the most popularly used characterization techniques for determining the aforementioned parameters, with particular focus on nanomedicine and biosensing applications, are discussed. Moreover, we provide numerous biomedical applications and highlight their challenges and requirements that must be met using the magnetic nanoparticles to achieve the most effective outcomes. Finally, we conclude this review by providing an insight towards resolving the persisting challenges and the future directions. This review should be an excellent source of information for beginners in this field who are looking for a groundbreaking start but they have been overwhelmed by the volume of literature.
机译:磁性纳米粒子的非凡的多峰功能性(取决于其尺寸和形态)对于解决减缓纳米生物技术发展的挑战非常重要。纳米生物技术中,尤其是在纳米医学和治疗学领域中,磁性纳米颗粒的迅速而革命性的发展,需要对合成和表征磁性纳米颗粒的现有技术进行概述。在这篇综述中,我们解释了用于调整磁性纳米粒子的大小,形态,组成和磁性的合成途径。讨论了用于确定上述参数的最普遍使用的表征技术的优缺点,尤其侧重于纳米医学和生物传感应用。此外,我们提供了许多生物医学应用,并强调了使用磁性纳米颗粒才能达到最有效结果所必须满足的挑战和要求。最后,我们通过提供对解决持续存在的挑战和未来方向的见识来结束本综述。对于该领域的初学者来说,这篇综述应该是一个极好的信息来源,他们正在寻找一个开创性的开端,但是他们已经被大量的文献所淹没。

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