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用于具有可变收发器距离的数字分子通信的反应信使。

Reactive messengers for digital molecular communication with variable transmitter-receiver distance.

机构信息

Laboratory for Molecular Surfaces and Nanotechnology (LAMSUN), Department of Chemical Sciences, University of Catania and CSGI, v. A Doria 6 Catania 95125, Italy.

出版信息

Phys Chem Chem Phys. 2018 Dec 12;20(48):30312-30320. doi: 10.1039/c8cp05643a.

Abstract

Molecular communication exploits functional molecular systems travelling along fluid media to deliver messages encoded as concentration pulses, e.g. molecular bits. As the bits are naturally broadened by diffusion, limiting the distance along which information can be transferred, by careful design and optimization of the molecular messengers, is required. A new paradigm, exploiting the chemical reactivity of a suitable molecular messenger, has been developed to achieve long range information transfer with variable transmitter-receiver distances. The experimental results and theoretical simulations, carried out by using fluorescent molecules switched by pH-driven hydrolysis, are reported here. In particular, we simulated the information transport process by using numerical solutions of differential equations governing information swapping and we show that by exploiting the reactivity of the chemical messenger, a stable signal at the receiver is maintained within a wide range of distance. This theoretical prediction was fully experimentally verified by using a prototypal molecular communication platform.

摘要

分子通信利用沿着流体介质传播的功能分子系统来传递编码为浓度脉冲的消息,例如分子位。由于比特会自然地通过扩散而变宽,因此需要通过仔细设计和优化分子信令来限制信息可以传输的距离。一种新的范式,利用合适的分子信令的化学反应性,已经被开发出来,以实现具有可变发射机-接收机距离的长距离信息传输。本文报告了使用 pH 驱动水解切换的荧光分子进行的实验结果和理论模拟。具体来说,我们通过使用控制信息交换的微分方程的数值解来模拟信息传输过程,并表明通过利用化学信令的反应性,可以在广泛的距离范围内在接收器处保持稳定的信号。通过使用原型分子通信平台,完全实验验证了这一理论预测。

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