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Core-Shell (CS) Nanostructures and Their Application Based on Magnetic and Optical Properties

机译:基于磁和光学性质的核壳纳米结构及其应用

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Core-shell nanomaterials have been an active area of research for their tailored multifunctional properties arising as a result of the coexistence of two or more nanostructured phases of different composition with one forming the shell on the surface of the other. This review highlights the key developments and current status of these core-shell nanostructures with special emphasis on those having interesting magnetic and optical properties. We also discuss bimetallic and functionalized core-shell nanostructures along with their potential applications. With the advent of highly sophisticated techniques, it is now possible to precisely examine and control the size and shape of the core and the shell in these nanostructures. Core-shell structures designed for magnetic properties have been tuned and such materials have found potential applications as MRI contrast and drug delivery agents. For instance, core-shell nanostructures which show response towards changes in the physiological pH have been shown to deliver drugs for curing cancer. Functionalized core-shell nanostructures have also been used to sense changes in pH of the system. Exciting photonic applications can be engineered by appropriate energy band alignment of the core and shell materials. The importance of core-shell nanocrystals can be gauged from the wide range of applications in the field of biomedical technology involving photonics and biophotonics, biological labels, multimodal bio-imaging, photodynamic therapy and drug delivery. In this review article, we have tried to focus on the recent developments in the field of core-shell nanostructures with applications ranging from photonics, magnetic sensors, drug delivery agents, medical diagnostics and photo-catalysis. We begin with a brief introduction and then build on the information by focusing on the developments in the past ten years especially focusing on specific applications of current and future interest.
机译:核-壳纳米材料因其定制的多功能特性而成为研究的活跃领域,这是由于两种或多种不同组成的纳米结构相共存而形成的,其中一种在另一种表面上形成壳。这篇综述重点介绍了这些核壳纳米结构的关键发展和当前状态,特别着重于那些具有令人感兴趣的磁性和光学性质的纳米结构。我们还将讨论双金属和功能化的核壳纳米结构及其潜在应用。随着高度复杂的技术的出现,现在可以精确地检查和控制这些纳米结构中核和壳的大小和形状。设计用于磁性的核壳结构已经过调整,此类材料已发现了潜在的应用,如MRI造影剂和药物递送剂。例如,已经显示出对生理pH的变化有响应的核-壳纳米结构可递送用于治愈癌症的药物。功能化的核-壳纳米结构也已用于检测系统pH的变化。可以通过核和壳材料的适当能带对齐来设计令人兴奋的光子应用。核-壳纳米晶体的重要性可以从生物医学技术领域的广泛应用中进行评估,涉及光子学和生物光子学,生物标记,多峰生物成像,光动力疗法和药物输送。在这篇评论文章中,我们尝试着眼于核-壳纳米结构领域的最新发展,其应用范围包括光子学,磁传感器,药物递送剂,医学诊断和光催化。我们从简要介绍开始,然后通过关注过去十年的发展,特别是关注当前和未来兴趣的特定应用来构建信息。

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