Sequential‐Dependent Synthesis of Bimetallic Silver‐Chromium Nanoparticles for Multichannel Sensing, Logic Computing, and 3 in 1 Information Protection

Author:

Liu Qing Yu1,Wu Ying1,Bu Zhen Qi1,Quan Min Xia1,Lu Jiao Yang2,Huang Wei Tao1ORCID

Affiliation:

1. State Key Laboratory of Developmental Biology of Freshwater Fish Hunan Provincial Key Laboratory of Microbial Molecular Biology College of Life Science Hunan Normal University Changsha 410081 P. R. China

2. Hunan Key Laboratory of the Research and Development of Novel Pharmaceutical Preparations Academician Workstation Changsha Medical University Changsha 410219 P. R. China

Abstract

AbstractBimetallic nanomaterials (BNMs) have been used in sensing, biomedicine, and environmental remediation, but their multipurpose and comprehensive applications in molecular logic computing and information security protection have received little attention. Herein, This synthesis method is achieved by sequentially adding reactants under ice bath conditions. Interestingly, Ag‐Cr NPs can dynamically selectively sense anions and reductants in multiple channels. Especially, ClO can be quantitatively detected by oxidizing Ag‐Cr NPs with detection limits of 98.37 nM (at 270 nm) and 31.83 nM (at 394 nm). Based on sequential‐dependent synthesis process of Ag‐Cr NPs, Boolean logic gates and customizable molecular keypad locks are constructed by setting the reactants as the inputs, the states of the resulting solutions as the outputs. Furthermore, dynamically selective response patterns of the Ag‐Cr NPs can be converted into binary strings to exploit molecular crypto‐steganography to encode, store, and hide information. By integrating the three dimensions of authorization, encryption, and steganography, 3 in 1 advanced information protection based on Ag‐Cr nanosensing system can be achieved, which can enhance the anti‐cracking ability of information. This research will promote the development and application of nanocomposites in the field of information security and deepen the connection between molecular sensing and the information world.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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