TY - GEN
T1 - Studies of crystallinity and morphology bacterial cellulose membrane with various addition graphene
AU - Annas, Nafrizal
AU - Suryanto, Heru
AU - Aminnudin,
AU - Maulana, Jibril
AU - Yanuhar, Uun
N1 - Publisher Copyright:
© 2024 Author(s).
PY - 2024/7/18
Y1 - 2024/7/18
N2 - Bacterial cellulose (BC) is synthesized from extract of pineapple peel and Acetobacter xylinum as fermentation bacteria. This study aims to investigate the influence of graphene concentration on the morphology and crystalinity in bacterial nanocellulose (BNC) nanocomposites. To obtain bacterial nanocellulose (BNC), the previously manufactured pellicle BC was homogenized using a high-speed blender and a high-pressure homogenizer (HPH). Bacterial nanocellulose was combined with different concentrations of graphene (0.25, 0.5, and 1%), and then put into an ultrasonic homogenizer. Then, BNC-graphene solution was poured into a glass mold laminated with aluminium foil, and it was dried in an oven for 14 hours, 80°C. Scanning electron microscopy (SEM) was used to observe the morphology of nanocomposites membrane. X-Ray Diffraction is used to investigate the crystallinity of nanocomposites membrane. The structure of BNC-graphene nanocomposites membrane become more compact, according to the synthesized results. A few peaks at 2θ of 14.5°, 16.6°, 22.7° are seen in the XRD analysis, as well as a graphene diffraction pattern peak at 2θ of 13.7°. Nanocomposites membrane's crystallinity was reduced after graphene was added when compared to nanocomposites membrane without graphene.
AB - Bacterial cellulose (BC) is synthesized from extract of pineapple peel and Acetobacter xylinum as fermentation bacteria. This study aims to investigate the influence of graphene concentration on the morphology and crystalinity in bacterial nanocellulose (BNC) nanocomposites. To obtain bacterial nanocellulose (BNC), the previously manufactured pellicle BC was homogenized using a high-speed blender and a high-pressure homogenizer (HPH). Bacterial nanocellulose was combined with different concentrations of graphene (0.25, 0.5, and 1%), and then put into an ultrasonic homogenizer. Then, BNC-graphene solution was poured into a glass mold laminated with aluminium foil, and it was dried in an oven for 14 hours, 80°C. Scanning electron microscopy (SEM) was used to observe the morphology of nanocomposites membrane. X-Ray Diffraction is used to investigate the crystallinity of nanocomposites membrane. The structure of BNC-graphene nanocomposites membrane become more compact, according to the synthesized results. A few peaks at 2θ of 14.5°, 16.6°, 22.7° are seen in the XRD analysis, as well as a graphene diffraction pattern peak at 2θ of 13.7°. Nanocomposites membrane's crystallinity was reduced after graphene was added when compared to nanocomposites membrane without graphene.
UR - https://www.scopus.com/pages/publications/85199563364
U2 - 10.1063/5.0204725
DO - 10.1063/5.0204725
M3 - Conference contribution
AN - SCOPUS:85199563364
T3 - AIP Conference Proceedings
BT - AIP Conference Proceedings
A2 - Fatimah, Is
PB - American Institute of Physics
T2 - 4th International Conference on Chemical Processing and Engineering, IC3PE 2022
Y2 - 27 September 2022
ER -