In this paper, we detail improvements in the sensing properties of reduced graphene oxide (AGO), which were achieved through functionalization. The functionalization process utilizes graphene oxide suspensions, generating nanoparticles on the AGO surface mainly comprised of Ni(OH)(2) phase. Raman spectra indicate that functionalization increases the degree of disorder in RGOs. NO2 gas sensing tests reveal an approximate increase of 154% in the sensor response of the RGOs after functionalization. Possible mechanisms for improving sensing responses via functionalization are discussed. The enhancement is due to the spillover effect, to the increase of the sensor surface by the catalytic particles, to the reduction of AGO conduction volume thro...
The crystal structure of graphene flakes is expected to significantly affect their sensing propertie...
The detection of different types of gases is becoming more and more important in our society due to ...
Graphene is worth evaluating for chemical sensing and biosensing due to its outstanding physical and...
We fabricated functionalized RGO that demonstrates excellent sensitivity to H2S gas. The functionali...
Single and few-layer graphene nanosheets (GNs) have successfully synthesized by a modified Hummer...
Graphene oxide (GO) and reduced graphene oxide (RGO) have unique properties that can revolutionize t...
Herein, we report on a facile, low-cost, and efficient method to tune the structure and properties o...
The microstructures of metal oxide-modified reduced graphene oxide (RGO) are expected to significant...
Graphene and its exotic forms have been widely recognized as exceptional materials for gas-sensing a...
We first report the mechanism of gas sensing improvement of reduced graphene oxides (RGOs) by electr...
Reduced graphene oxide (rGO) was investigated as a material for use in chemiresistive gas sensors. T...
We report a synthesis of magnetic nanoparticles chemically immobilized onto reduced graphene oxide s...
학위논문 (석사)-- 서울대학교 대학원 : 재료공학부, 2014. 8. 장호원.Graphene oxide (GO), an atomically thin layer of graphit...
We have devised a method to simultaneously reduce graphene oxide and gold metal ions onto the surfac...
A novel hierarchical NiO cube (hc-NiO)/nitrogen-doped reduced graphene oxide (N-rGO) composite is sy...
The crystal structure of graphene flakes is expected to significantly affect their sensing propertie...
The detection of different types of gases is becoming more and more important in our society due to ...
Graphene is worth evaluating for chemical sensing and biosensing due to its outstanding physical and...
We fabricated functionalized RGO that demonstrates excellent sensitivity to H2S gas. The functionali...
Single and few-layer graphene nanosheets (GNs) have successfully synthesized by a modified Hummer...
Graphene oxide (GO) and reduced graphene oxide (RGO) have unique properties that can revolutionize t...
Herein, we report on a facile, low-cost, and efficient method to tune the structure and properties o...
The microstructures of metal oxide-modified reduced graphene oxide (RGO) are expected to significant...
Graphene and its exotic forms have been widely recognized as exceptional materials for gas-sensing a...
We first report the mechanism of gas sensing improvement of reduced graphene oxides (RGOs) by electr...
Reduced graphene oxide (rGO) was investigated as a material for use in chemiresistive gas sensors. T...
We report a synthesis of magnetic nanoparticles chemically immobilized onto reduced graphene oxide s...
학위논문 (석사)-- 서울대학교 대학원 : 재료공학부, 2014. 8. 장호원.Graphene oxide (GO), an atomically thin layer of graphit...
We have devised a method to simultaneously reduce graphene oxide and gold metal ions onto the surfac...
A novel hierarchical NiO cube (hc-NiO)/nitrogen-doped reduced graphene oxide (N-rGO) composite is sy...
The crystal structure of graphene flakes is expected to significantly affect their sensing propertie...
The detection of different types of gases is becoming more and more important in our society due to ...
Graphene is worth evaluating for chemical sensing and biosensing due to its outstanding physical and...