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Photonics Inc g flake graphene oxide paper
(a) Scheme of a reduced <t>graphene</t> oxide flake structure with examples of oxygen functionalities, that is, ketone (C=O), epoxide (C–O–C), carboxyl (COOH), hydroxy (OH), and aldehyde (CHO) groups. (b) Suggested redox reaction scheme [ , – ]. This scheme was prepared with the help of the ChemDraw Ultra tool .
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Struers Limited graphite flakes
(a) Scheme of a reduced <t>graphene</t> oxide flake structure with examples of oxygen functionalities, that is, ketone (C=O), epoxide (C–O–C), carboxyl (COOH), hydroxy (OH), and aldehyde (CHO) groups. (b) Suggested redox reaction scheme [ , – ]. This scheme was prepared with the help of the ChemDraw Ultra tool .
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Molecular Dynamics Inc graphite flake filled epoxies
(a) Scheme of a reduced <t>graphene</t> oxide flake structure with examples of oxygen functionalities, that is, ketone (C=O), epoxide (C–O–C), carboxyl (COOH), hydroxy (OH), and aldehyde (CHO) groups. (b) Suggested redox reaction scheme [ , – ]. This scheme was prepared with the help of the ChemDraw Ultra tool .
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Nacalai graphite flakes
(a) Scheme of a reduced <t>graphene</t> oxide flake structure with examples of oxygen functionalities, that is, ketone (C=O), epoxide (C–O–C), carboxyl (COOH), hydroxy (OH), and aldehyde (CHO) groups. (b) Suggested redox reaction scheme [ , – ]. This scheme was prepared with the help of the ChemDraw Ultra tool .
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(a) Scheme of a reduced graphene oxide flake structure with examples of oxygen functionalities, that is, ketone (C=O), epoxide (C–O–C), carboxyl (COOH), hydroxy (OH), and aldehyde (CHO) groups. (b) Suggested redox reaction scheme [ , – ]. This scheme was prepared with the help of the ChemDraw Ultra tool .

Journal: Beilstein Journal of Nanotechnology

Article Title: Reduced graphene oxide paper electrode for lithium-ion cells – towards optimized thermal reduction

doi: 10.3762/bjnano.17.3

Figure Lengend Snippet: (a) Scheme of a reduced graphene oxide flake structure with examples of oxygen functionalities, that is, ketone (C=O), epoxide (C–O–C), carboxyl (COOH), hydroxy (OH), and aldehyde (CHO) groups. (b) Suggested redox reaction scheme [ , – ]. This scheme was prepared with the help of the ChemDraw Ultra tool .

Article Snippet: To begin with, the G-Flake ® graphene oxide paper was produced in the Flake Graphene Research Group in Łukasiewicz Research Network, Institute of Microelectronics and Photonics, Warsaw, Poland, according to a patented method [ ], based solely on graphene oxide paste without any plasticizer.

Techniques:

SEM images of the reduced graphene oxide paper cross sections: (a) T400, (b) T600, and (c) T800.

Journal: Beilstein Journal of Nanotechnology

Article Title: Reduced graphene oxide paper electrode for lithium-ion cells – towards optimized thermal reduction

doi: 10.3762/bjnano.17.3

Figure Lengend Snippet: SEM images of the reduced graphene oxide paper cross sections: (a) T400, (b) T600, and (c) T800.

Article Snippet: To begin with, the G-Flake ® graphene oxide paper was produced in the Flake Graphene Research Group in Łukasiewicz Research Network, Institute of Microelectronics and Photonics, Warsaw, Poland, according to a patented method [ ], based solely on graphene oxide paste without any plasticizer.

Techniques:

FTIR spectra of the thermally reduced graphene oxide paper samples. The inset graph shows the wavenumber range characteristic for C=O-related vibrations. Bands near 1570, 1725 and 1808 cm −1 are marked with a square, a pentagon and a circle, respectively.

Journal: Beilstein Journal of Nanotechnology

Article Title: Reduced graphene oxide paper electrode for lithium-ion cells – towards optimized thermal reduction

doi: 10.3762/bjnano.17.3

Figure Lengend Snippet: FTIR spectra of the thermally reduced graphene oxide paper samples. The inset graph shows the wavenumber range characteristic for C=O-related vibrations. Bands near 1570, 1725 and 1808 cm −1 are marked with a square, a pentagon and a circle, respectively.

Article Snippet: To begin with, the G-Flake ® graphene oxide paper was produced in the Flake Graphene Research Group in Łukasiewicz Research Network, Institute of Microelectronics and Photonics, Warsaw, Poland, according to a patented method [ ], based solely on graphene oxide paste without any plasticizer.

Techniques: