학술논문
Green synthesis of reduced graphene oxide using ball milling
이용수 4
- 영문명
- Green synthesis of reduced graphene oxide using ball milling
- 발행기관
- 한국탄소학회
- 저자명
- G. Calder?n-Ayala M. Cortez-Valadez P. G. Mani-Gonzalez R. Britto Hurtado J. I. Contreras-Rasc?n R.
- 간행물 정보
- 『Carbon Letters』제21권, 93~97쪽, 전체 5쪽
- 주제분류
- 자연과학 > 자연과학일반
- 파일형태
- 발행일자
- 2017.01.01
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국문 초록
영문 초록
Today, finding superior methods for synthesis of graphene oxide (GO) and reduced graphene
oxide (rGO) from commercial graphite, is still a challenge. The global industry requires
the use of synthesis methods that are price-competitive and also use processes that are
environmentally compatible. GO is a substrate used for several chemical transformations,
including its reduction to related materials, such as rGO and graphene. The rGO has been
used recently to increase catalytic activity in the o-nitroaniline reduction to NaBH4 and Raman
activity in test molecules as p-aminothiophenol [1]. Other authors showed that the rGO
in combination with carbon nanotubes has the properties of supercapacitors [2]. Mao et al.
[3] obtained a gas sensor type field defect transistor of high sensitivity at low concentrations,
using sheets of rGO. On the other hand, rGO linked with Cu2O nanocrystals is capable of
removing dye pollution from wastewater [4].
목차
References
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- Mechanical properties of epoxy composites reinforced with ammonia-treated graphene oxides
- The effects of carbon coating onto graphite filler on the structure and properties of carbon foams
- Removal of chromium from tannery wastewater by electrosorption on carbon prepared from peach stones: effect of applied potential
- Tribological properties of carbon fiber-reinforced aluminum composites processed by spark plasma sintering
- Disorientation angle influence on the thermal residual stresses in carbon multilayered composite plates of different thicknesses
- A simple method to determine the surface energy of graphite
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- Study of complex electrodeposited thin film with multi-layer graphene-coated metal nanoparticles
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- Biocomposite membranes based on poly(3-hydroxybutyrate-co-3-hydroxyvalerate) and multiwall carbon nanotubes for gas separation
- Synthesize multi-walled carbon nanotubes via catalytic chemical vapour deposition method on Fe-Ni bimetallic catalyst supported on kaolin
- Thermoelectric Seebeck and Peltier effects of single walled carbon nanotube quantum dot nanodevice
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