基于具有可调颜色和寿命的碳纳米点的时分彩色多路复用。

IF 9.6 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY Nano Letters Pub Date : 2024-06-27 DOI:10.1021/acs.nanolett.4c02165
Li-Ying Jiang, Yu-Chen Zhou, Si-Fan Zhang, Hao-Chun Shao and Ya-Chuan Liang*, 
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引用次数: 0

摘要

光学复用技术在数据存储、防伪和时间分辨生物成像等多个领域发挥着重要作用。然而,采用单波长磷光进行多路复用往往会导致各通道发射峰的光谱重叠,从而在信息解码过程中产生串扰和误读,影响加密数据的完整性和精确性。本文提出了一种基于不同颜色和寿命的磷光碳纳米点的分时彩色多路复用技术。利用不同的发光颜色来表示不同的信息级别,有助于实现多级信息加密和存储。通过调制发光寿命和发射波长,可以对复杂的信息进行编码,从而提高加密机制的复杂性和安全性。通过为每种颜色分配不同的数据位,可以在相同的物理空间内编码更多的信息。这种方法可实现更高密度的信息存储并强化加密,确保信息的紧凑性和安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Time Division Colorful Multiplexing Based on Carbon Nanodots with Modifiable Colors and Lifetimes

Optical multiplexing technology plays a crucial role in various fields such as data storage, anti-counterfeiting, and time-resolved biological imaging. Nevertheless, employing single-wavelength phosphorescence for multiplexing often results in spectral overlap among the emission peaks of various channels, which can precipitate crosstalk and misinterpretation in the information-decoding process, thereby compromising the integrity and precision of the encrypted data. This paper proposes a time-divided colorful multiplexing technology based on phosphorescent carbon nanodots with different colors and lifetimes. Using different luminescence colors to symbolize varying information levels helps achieve multitiered information encryption and storage. By modulation of the lifetime and the emission wavelength, intricate information can be encoded, thereby enhancing the intricacy and security of the encryption mechanism. By assigning different data bits to each color, more information can be encoded in the same physical space. This method enables higher-density information storage and fortifies encryption, ensuring the compactness and security of information.

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来源期刊
Nano Letters
Nano Letters 工程技术-材料科学:综合
CiteScore
16.80
自引率
2.80%
发文量
1182
审稿时长
1.4 months
期刊介绍: Nano Letters serves as a dynamic platform for promptly disseminating original results in fundamental, applied, and emerging research across all facets of nanoscience and nanotechnology. A pivotal criterion for inclusion within Nano Letters is the convergence of at least two different areas or disciplines, ensuring a rich interdisciplinary scope. The journal is dedicated to fostering exploration in diverse areas, including: - Experimental and theoretical findings on physical, chemical, and biological phenomena at the nanoscale - Synthesis, characterization, and processing of organic, inorganic, polymer, and hybrid nanomaterials through physical, chemical, and biological methodologies - Modeling and simulation of synthetic, assembly, and interaction processes - Realization of integrated nanostructures and nano-engineered devices exhibiting advanced performance - Applications of nanoscale materials in living and environmental systems Nano Letters is committed to advancing and showcasing groundbreaking research that intersects various domains, fostering innovation and collaboration in the ever-evolving field of nanoscience and nanotechnology.
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