Preparation of Tunable Multicolor Persistent Room Temperature Phosphorescence Materials by Doping Cellulose Nanocrystals with Aromatic Carboxylic Acids

IF 7.2 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Qing Zhou, Feng Jin, Man Liu, Xiangxi Zhang, Qi Li, Lei Yang
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Abstract

Persistent organic room temperature phosphorescence (p-RTP) luminescent materials have broad application prospects in multiple anti-counterfeiting encryption and other fields. It is generally difficult for single component substances to achieve adjustable full color gamut p-RTP afterglow, and dual component doping may be a feasible solution. Here, by doping a small amount of aromatic acid molecules with controllable conjugation into cellulose nanocrystals (CNC), which can generate various interactions, and full color gamut long afterglow emitting luminescent material with blue to red light is successfully prepared under the same excitation. Not only does it achieve adjustable afterglow color, but it also has long afterglow emission (447.02 ms). The high crystallinity of CNC and its strong hydrogen bonding with doped molecules endow aromatic acid molecules with a liquid nitrogen like environment, resulting in a multi-color afterglow under strong conformational hardening. The frontline orbit theory calculation also proves the above speculation. This simple method for preparing powder materials with all color gamut adjustable p-RTP emission has proven to have great commercial prospects in the field of multiple anti-counterfeiting encryption.

Abstract Image

芳香族羧酸掺杂纤维素纳米晶制备可调多色室温持久性磷光材料
持久性有机室温磷光(p-RTP)发光材料在多重防伪加密等领域有着广阔的应用前景。单组分物质一般难以实现可调的全色域p-RTP余辉,双组分掺杂可能是一种可行的解决方案。本文通过在纤维素纳米晶体(CNC)中掺杂少量具有可控共轭的芳香族酸分子,产生多种相互作用,在相同激发下成功制备出具有蓝到红光的全色域长余辉发光材料。不仅实现了余辉颜色可调,而且余辉发射时间长(447.02 ms)。CNC的高结晶度及其与掺杂分子的强氢键使芳香酸分子具有类似液氮的环境,在强构象硬化下产生多色余辉。一线轨道理论计算也证明了上述推测。这种制备全色域可调p-RTP发射的粉末材料的简单方法在多重防伪加密领域已被证明具有很大的商业前景。
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来源期刊
Advanced Optical Materials
Advanced Optical Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-OPTICS
CiteScore
13.70
自引率
6.70%
发文量
883
审稿时长
1.5 months
期刊介绍: Advanced Optical Materials, part of the esteemed Advanced portfolio, is a unique materials science journal concentrating on all facets of light-matter interactions. For over a decade, it has been the preferred optical materials journal for significant discoveries in photonics, plasmonics, metamaterials, and more. The Advanced portfolio from Wiley is a collection of globally respected, high-impact journals that disseminate the best science from established and emerging researchers, aiding them in fulfilling their mission and amplifying the reach of their scientific discoveries.
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