Synthesis of Graphene Oxide using Modified Hummers Method: Solvent Influence

Синтез оксида графена модифицированным методом Хаммерса: влияние растворителя
Sin Jin Tan, Weiwen Liu, U. Hashim, N. I. Zaaba, K. L. Foo, Chun Hong Voon
2017-01-01

FTIR functional groupsSEM morphologyXRD interlayer spacingacetone-GOelectrical propertiesethanol-GOgraphene oxidemodified Hummers methodsolvent influencespin-coating
The aim of this study is to study the influence of different solvents on the structure and electrical properties of graphene oxide. GO was obtained from graphite flakes by using modified hummers method in which different from conventional hummer's method. In this method, the experiment was synthesized without sodium nitrate (NaNO3) and ice bath, but carried out at room temperature. Prepared GO powders were then dissolved into different solvents, namely acetone and ethanol. Then spin-coated onto silicon wafer and IDE to produce acetone-GO (A-GO) and ethanol-GO (E-GO). SEM result shows that several square micron GO were obtained. In addition, due to the large agglomerates and contact between the flakes in E-GO sample, current-voltage pattern indicated the E-GO produced higher current flow than A-GO. Meanwhile, GO characterized using FTiR shows that both samples contain several functional groups such as hydroxyl, epoxy, carboxyl and carbonyl. Besides that, due to the lower diffraction peak of A-GO, XRD result shows the interlayer spacing of A-GO sample is slightly higher than E-GO sample.
1
Current-voltage measurements indicate E-GO has higher electrical current flow than A-GO, attributed to larger agglomerates and better interflake contact.
2
FTIR characterization reveals both A-GO and E-GO contain hydroxyl, epoxy, carboxyl, and carbonyl functional groups.
3
Graphene oxide (GO) was synthesized from graphite flakes using a modified Hummers method omitting NaNO3 and ice bath and performed at room temperature.
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Prepared GO powders were dispersed in acetone and ethanol, then spin-coated to produce acetone-GO (A-GO) and ethanol-GO (E-GO) films.
5
SEM shows GO flakes of several square microns; E-GO exhibits large agglomerates and increased flake contact compared to A-GO.
6
XRD shows A-GO has a lower diffraction peak and a slightly larger interlayer spacing than E-GO.

Graphene oxide samples (acetone-GO and ethanol-GO) produced by modified Hummers method

Influence of solvent (acetone vs ethanol) on the structure and electrical properties of graphene oxide, including morphology, interlayer spacing, functional groups, and current–voltage behavior

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2017-01-01
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Sin Jin Tan
Weiwen Liu
U. Hashim
N. I. Zaaba
K. L. Foo
Chun Hong Voon
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