2021•IEEE Sensors JournalRequires access

Optoelectronic and Nanosensors Detection Systems: A Review

A. Lay-Ekuakille, Alessandro S. Massaro, SATYA PRAKASH SINGH, Ireneusz Jabłoński, Md. Zıa Ur Rahman, Fabrizio Spano

Open publisher page 23 citations

Abstract

The detection is the main feature of a sensor, and, in particular, nanosensor. This latter may detain high capability of detection, given its dimensions. Optoelectronics comes to help the field of nanosensors with innovations regarding new solutions. This paper provides an overview of the most important significant milestones with clear applications, namely in the fields of pressure nanosensors, nanomaterials to be characterized in an optical viewpoint, using artificial intelligence in the design of nanosensors, optical communications with dedicated circuits, and nanosensors for extreme radiation. These cases illustrate the importance of detection, especially the efficiency of the sensor/nanosensor.

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What this paper is about

The detection is the main feature of a sensor, and, in particular, nanosensor. This latter may detain high capability of detection, given its dimensions. Optoelectronics comes to help the field of nanosensors with innovations regarding new solutions. This paper provides an overview of the most important significant milestones with clear applications, namely in the fields of pressure nanosensors, nanomaterials to be characterized in an optical viewpoint, using artificial intelligence in the design of nanosensors, optical communications with dedicated circuits, and nanosensors for extreme radiation. These cases illustrate the importance of detection, especially the efficiency of the sensor/nanosensor.

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OpenAlex reports 23 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The detection is the main feature of a sensor, and, in particular, nanosensor. This latter may detain high capability of detection, given its dimensions. Optoelectronics comes to help the field of nanosensors with innovations regarding new solutions. This paper provides an overview of the most important significant milestones with clear applications, namely in the fields of pressure nanosensors, nanomaterials to be characterized in an optical viewpoint, using artificial intelligence in the design of nanosensors, optical communications with dedicated circuits, and nanosensors for extreme radiation. These cases illustrate the importance of detection, especially the efficiency of the sensor/nanosensor.

Key concepts: Nanosensor, Nanotechnology, Nanomaterials, Computer science, Materials science, Electronic engineering, Engineering

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