Nanomaterial-based flexible sensors for metaverse and virtual reality applications

Author:

Wang JianfeiORCID,Suo Jiao,Song Zhengxun,Li Wen Jung,Wang Zuobin

Abstract

Abstract Nanomaterial-based flexible sensors (NMFSs) can be tightly attached to the human skin or integrated with clothing to monitor human physiological information, provide medical data, or explore metaverse spaces. Nanomaterials have been widely incorporated into flexible sensors due to their facile processing, material compatibility, and unique properties. This review highlights the recent advancements in NMFSs involving various nanomaterial frameworks such as nanoparticles, nanowires, and nanofilms. Different triggering interaction interfaces between NMFSs and metaverse/virtual reality (VR) applications, e.g. skin-mechanics-triggered, temperature-triggered, magnetically triggered, and neural-triggered interfaces, are discussed. In the context of interfacing physical and virtual worlds, machine learning (ML) has emerged as a promising tool for processing sensor data for controlling avatars in metaverse/VR worlds, and many ML algorithms have been proposed for virtual interaction technologies. This paper discusses the advantages, disadvantages, and prospects of NMFSs in metaverse/VR applications.

Funder

China Scholarship Council (CSC) under the Grant CSC

Hong Kong Research Grants Council

Jilin Provincial Science and Technology Program

Science and Technology Program of Changchun

“111” Project of China

Publisher

IOP Publishing

Subject

Industrial and Manufacturing Engineering

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