Suppr超能文献

分子结构、对称性和形状作为用于二次谐波产生的分子晶体制造中的设计元素以及材料中分子的作用。

Molecular structure, symmetry, and shape as design elements in the fabrication of molecular crystals for second harmonic generation and the role of molecules-in-materials.

作者信息

Radhakrishnan T P

机构信息

School of Chemistry, University of Hyderabad, Hyderabad 500 046, India.

出版信息

Acc Chem Res. 2008 Mar;41(3):367-76. doi: 10.1021/ar7002072. Epub 2008 Feb 9.

Abstract

Molecular materials have emerged as a major theme in contemporary science and technology, thanks to the synergetic confluence of the power of synthetic chemistry, the predictive and analytical capability of condensed matter physics, and the versatility of materials science and engineering. The stringent demands in terms of molecular design and supramolecular assembly to be met in the fabrication of nonlinear optical (NLO) materials for applications such as optical second harmonic generation (SHG) make it a unique arena covering fascinating explorations in chemical synthesis, molecular and materials characterization, theoretical modeling, NLO studies, and photonics technology. Our search for conceptually novel and practically simple but effective approaches to the design of molecular building blocks for crystals exhibiting efficient SHG has led us to the avenues described in this Account. The focus has been on the incorporation of structural, symmetry, and shape features in dipolar NLO-phores to realize noncentrosymmetric or polar molecular assemblies suitable to elicit appreciable SHG responses. Attachment of n-alkyl chains of optimal length and remote functional groups were shown to be effective methods to steer the assembly of achiral NLO-phore units into SHG-active noncentrosymmetric lattices. Computational modeling of molecules, molecular clusters, and molecular assemblies in crystals provides valuable insight into the observed structure-function correlations. A systematic exploration of the impact of the placement of stereogenic centers in strongly zwitterionic NLO-phores on the molecular organization led us to the effective exploitation of C2-symmetric units to form helical superstructures capable of efficient SHG. New materials developed are based on organic and metal-organic molecules as well as coordination polymers. The potential utility of molecular shape could be demonstrated through the realization of perfectly polar organization in a family of screw-shaped dipolar molecules. Combination of optical transparency, thermal stability, and feasibility of fabricating thin films with orientationally ordered crystallites are important aspects of these materials. Several examples presented in this Account highlight the significance of molecules-in-materials by illustrating that not only the individual molecules and their organization in the crystal lattice but also the intermolecular interactions exert critical impact on the nonlinear optical response of the materials. The role of cooperative interactions in some of the cases is pointed out. This Account projects a range of design strategies for molecular SHG crystals and avenues for expanding further on the present observations; the need to address and exploit the contribution of intermolecular interactions is specially noted. The different examples presented illustrate not only the fabrication of new families of materials based on interesting models proposed earlier but also the emergence of new models from the novel materials developed.

摘要

分子材料已成为当代科学技术的一个主要主题,这得益于合成化学的力量、凝聚态物理的预测和分析能力以及材料科学与工程的多功能性的协同融合。在诸如光学二次谐波产生(SHG)等应用的非线性光学(NLO)材料制造中,需要满足分子设计和超分子组装方面的严格要求,这使其成为一个独特的领域,涵盖了化学合成、分子和材料表征、理论建模、NLO研究及光子技术等引人入胜的探索。我们对设计具有高效SHG的晶体分子构建块的概念新颖且实际简单但有效的方法的探索,引领我们走向了本综述中所描述的途径。重点在于将结构、对称性和形状特征纳入偶极NLO发色团中,以实现适合引发可观SHG响应的非中心对称或极性分子组装。连接最佳长度的正烷基链和远程官能团被证明是将非手性NLO发色团单元组装成SHG活性非中心对称晶格的有效方法。对晶体中的分子、分子簇和分子组装进行计算建模,为观察到的结构 - 功能相关性提供了有价值的见解。对强两性离子NLO发色团中手性中心位置对分子组织的影响进行系统探索,使我们能够有效地利用C2对称单元形成能够高效SHG的螺旋超结构。所开发的新材料基于有机和金属有机分子以及配位聚合物。通过在一族螺旋形偶极分子中实现完美的极性组织,可以证明分子形状的潜在效用。光学透明性、热稳定性以及制造具有取向有序微晶的薄膜的可行性是这些材料的重要方面。本综述中给出的几个例子通过说明不仅单个分子及其在晶格中的组织,而且分子间相互作用对材料的非线性光学响应都产生关键影响,突出了材料中分子的重要性。指出了在某些情况下协同相互作用的作用。本综述提出了一系列用于分子SHG晶体的设计策略以及基于当前观察结果进一步拓展的途径;特别指出了应对和利用分子间相互作用贡献的必要性。所展示的不同例子不仅说明了基于先前提出的有趣模型制造新材料家族,也说明了从所开发的新型材料中出现新模型的情况。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验