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Metal-organic frameworks as competitive materials for non-linear optics

机译:金属有机框架作为非线性光学的竞争材料

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The last five years have witnessed a huge breakthrough in the creation and the study of the properties of a new class of compounds -metamaterials. The next stage of this technological revolution will be the development of active, controllable, and non-linear metamaterials, surpassing natural media as platforms for optical data processing and quantum information applications. However, scientists are constantly faced with the need to find new methods that can ensure the formation of quantum and non-linear metamaterials with higher resolution. One such method of producing metamaterials in the future, which will provide scalability and availability, is chemical synthesis. Meanwhile, the chemical synthesis of organized 3D structures with a period of a few nanometers and a size of up to a few millimeters is not an easy task and is yet to be resolved. The most promising avenue seems to be the use of highly porous structures based on metalorganic frameworks that have demonstrated their unique properties in the field of non-linear optics ( NLO) over the past three years. Thus, the aim of this review is to examine current progress and the possibilities of using metal-organic frameworks in the field of non-linear optics as chemically obtained metamaterials of the future. The review begins by presenting the theoretical principles of physical phenomena represented by mathematical descriptions for clarity. Major attention is paid to the second harmonic generation ( SHG) effect. In this section we compare inorganic single crystals, which are most commonly used to study the effect in question, to organic materials, which also possess the required properties. Based on these data, we present a rationale for the possibility of studying the non-linear optical properties of metal-organic structures as well as describing the use of synthetic approaches and the difficulties associated with them. The second part of the review explicitly acquaints the reader with a new class of materials which successfully combines the positive properties of organic and inorganic materials. Using recently synthesized metalorganic frameworks and coordination polymers in the field of non-linear optics as an example, we consider synthetic approaches used for obtaining materials with desired properties and the factors to be considered in this case. Finally, probable trends towards improving the quality of the synthesized materials with regards to their further use in the field of non-linear optical effects are described.
机译:在过去的五年中,在新型化合物-超材料的创建和研究方面取得了巨大突破。这项技术革命的下一阶段将是开发有源,可控和非线性的超材料,超越自然介质,将其用作光学数据处理和量子信息应用程序的平台。然而,科学家不断面临寻找新方法的需求,这些方法可以确保形成具有更高分辨率的量子和非线性超材料。将来将提供可伸缩性和可用性的一种此类生产超材料的方法是化学合成。同时,化学合成周期为几纳米,尺寸最大为几毫米的3D结构并不是一件容易的事,尚待解决。最有希望的途径似乎是使用基于金属有机骨架的高度多孔结构,该结构在过去三年中已在非线性光学(NLO)领域展示出其独特的性能。因此,本综述的目的是研究非线性光学领域中金属有机骨架作为未来化学获得的超材料的当前进展以及使用金属有机骨架的可能性。为了清楚起见,本文首先介绍以数学描述表示的物理现象的理论原理。主要关注二次谐波(SHG)效应。在本节中,我们将最常用于研究相关影响的无机单晶与也具有所需性能的有机材料进行比较。基于这些数据,我们为研究金属有机结构的非线性光学性质以及描述合成方法的使用以及与之相关的困难提供了理论依据。评论的第二部分明确地向读者介绍了一种新型材料,该材料成功地结合了有机材料和无机材料的积极特性。以非线性光学领域中最近合成的金属有机骨架和配位聚合物为例,我们考虑了用于获得具有所需特性的材料的合成方法以及在这种情况下要考虑的因素。最后,描述了在非线性光学效应领域中进一步使用合成材料的可能趋势。

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