Litcius/Paper detail

Recent Advancements of MXene/Nanocellulose‐Based Hydrogel and Aerogel: A Review

Bulbul Ahmed, Gahangir Hossain, Abdullah Al Parvez, Amit Talukder, Md. Al-Amin, Md. Abdullah Al Mahmud, Tarikul Islam

2023Advanced Energy and Sustainability Research39 citationsDOIOpen Access PDF

Abstract

MXenes have been highly attractive to researchers owing to their layered nanostructure, excellent electrical conductivity, and abundance of functional groups. Meanwhile, nanocellulose materials, known for their biodegradability, renewability, compatibility with living organisms, and cost‐effectiveness, have emerged as a popular choice for material selection researchers. Recent research has discovered that combining nanocellulose with MXenes can improve the mechanical properties of MXenes, resulting in composite materials with remarkable electrical and mechanical properties. This article provides an overview of the three main types of nanocellulose: cellulose nanofiber, cellulose nanocrystal, and bacterial cellulose. It also discusses various synthesis methods for MXenes, including MXene/nanocellulose‐based hydrogel and aerogel. Additionally, the article highlights the multiple uses of MXene/nanocellulose composites in different fields, including flexible sensing materials, electromagnetic shielding, energy storage structures, and wearable health monitoring. This review covers distinctive characteristics and unique MXene/nanocellulose composite behaviors, their recent advancements in MXene/nanocellulose synthesis, and applications. Moving forward, the potential for these materials to be used innovatively with anticipation of taking the MXene/nanocellulose‐based research further steps across the respective scientific community.

Topics & Concepts

NanocelluloseMXenesBacterial celluloseMaterials scienceNanotechnologyAerogelNanofiberCelluloseChemical engineeringEngineeringElectromagnetic wave absorption materialsAdvanced Cellulose Research StudiesAdvanced Sensor and Energy Harvesting Materials