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通过混合簇异金属金属有机框架中本征态与DNA-荧光团结合实现的可编程光致发光

Programmable Photoluminescence via Intrinsic and DNA-Fluorophore Association in a Mixed Cluster Heterometallic MOF.

作者信息

Sava Gallis Dorina F, Butler Kimberly S, Pearce Charles J, Valdez Nichole, Rodriguez Mark A

机构信息

Nanoscale Sciences Department, Sandia National Laboratories, Albuquerque, New Mexico 87185, United States.

Molecular and Microbiology Department, Sandia National Laboratories, Albuquerque, New Mexico 87185, United States.

出版信息

ACS Appl Mater Interfaces. 2022 Mar 2;14(8):10566-10576. doi: 10.1021/acsami.1c24477. Epub 2022 Feb 16.

Abstract

A rapid and facile design strategy to create a highly complex optical tag with programmable, multimodal photoluminescent properties is described. This was achieved via intrinsic and DNA-fluorophore hidden signatures. As a first covert feature of the tag, an intricate novel heterometallic near-infrared (NIR)-emitting mesoporous metal-organic framework (MOF) was designed and synthesized. The material is constructed from two chemically distinct, homometallic hexanuclear clusters based on Nd and Yb. Uniquely, the Nd-based cluster is observed here for the first time in a MOF and consists of two staggered Nd μ-oxo trimers. To generate controlled, multimodal, and tailorable emission with difficult to counterfeit features, the NIR-emissive MOF was post-synthetically modified via a fluorescent DNA oligo labeling design strategy. The surface attachment of several distinct fluorophores, including the simultaneous attachment of up to three distinct fluorescently labeled oligos was achieved, with excitation and emission properties across the visible spectrum (480-800 nm). The DNA inclusion as a secondary covert element in the tag was demonstrated via the detection of SYBR Gold dye association. Importantly, the approach implemented here serves as a rapid and tailorable way to encrypt distinct information in a facile and modular fashion and provides an innovative technology in the quest toward complex optical tags.

摘要

描述了一种快速简便的设计策略,用于创建具有可编程多模态光致发光特性的高度复杂光学标签。这是通过固有和DNA荧光团隐藏特征实现的。作为标签的第一个隐蔽特征,设计并合成了一种复杂的新型近红外(NIR)发射异金属介孔金属有机框架(MOF)。该材料由基于钕(Nd)和镱(Yb)的两种化学性质不同的同金属六核簇构建而成。独特的是,基于钕的簇首次在MOF中被观察到,它由两个交错的钕μ-氧三聚体组成。为了产生具有难以伪造特征的可控、多模态和可定制发射,通过荧光DNA寡核苷酸标记设计策略对近红外发射MOF进行了后合成修饰。实现了几种不同荧光团的表面附着,包括同时附着多达三个不同的荧光标记寡核苷酸,其激发和发射特性涵盖可见光谱(480 - 800 nm)。通过检测SYBR Gold染料结合证明了DNA作为标签中的第二个隐蔽元素。重要的是,这里实施的方法提供了一种快速且可定制的方式,以简便和模块化的方式加密不同信息,并为寻求复杂光学标签提供了一种创新技术。

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