Synthesis and characterization of microcrystals cellulose from citronella waste (Cymbopogon nardus L.) as a filler in graphene oxide

Author:

Fabiani V A,Indriawati A,Andini D E,Sari S A P,Asriza R O

Abstract

Abstract One of the energy storage materials that is interesting to research is graphene-based. Electrodes from multiple layers of graphene oxide can produce dense porous materials capable of trapping charged ions of various sizes. Graphene-based materials generally need to be composited to prevent layer buildup, resulting in less than optimal energy storage characteristics. Microcrystal cellulose should be added to reduce the formation of the graphene layer and increase the pore size. Microcrystal cellulose are produced by decomposing and separating the parts of natural cellulose crystals. One type of grass in Bangka Belitung is the citronella (Cymbopogon nardus). The cellulose yield from citronella waste is 22%. Based on FTIR spectroscopy, there are typical functional groups of cellulose such as C=O, C-H, C-O, and C-O-C groups. The size of the cellulose microcrystals obtained is 49.47 µm.

Publisher

IOP Publishing

Subject

General Medicine

Reference15 articles.

1. Graphene and Graphene Oxide Based Aerogels: Synthesis, Characteristics and Supercapacitor Applications;Korkmaz;J. Energy Storage,2020

2. Field-Effect Transistors Based on Single-Layer Graphene and Graphene-Derived Materials;Simionescu;Micromachines,2023

3. Tuning the Interlayer Spacing of Graphene Laminate Films for Efficient Pore Utilization Towards Compact Capacitive Energy Storage;Zhuangnan,2020

4. Completely Green Approach for the Preparation of Strong and Highly Conductive Graphene Composite Film by Using Nanocellulose as Dispersing Agent and Mechanical Compression;Yang;Acs Sustain. Chem. Eng,2017

5. Microcrystalline Cellulose: Isolation, Characterisation and Bio-composites Application-A Review;Trache,2016

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