scholarly journals Macrocycle-Functionalized RGO for Gas Sensors for BTX Detection Using a Double Transduction Mode

Chemosensors ◽  
2021 ◽  
Vol 9 (12) ◽  
pp. 346
Author(s):  
Elisa Ruiz ◽  
Thiaka Gueye ◽  
Claire Masson ◽  
Christelle Varenne ◽  
Alain Pauly ◽  
...  

To fabricate mass and resistive sensors based on reduced graphene oxide (RGO), we investigated the functionalization of RGO by tetra tert-butyl phthalocyanine (PcH2tBu), which possesses a macroring and tert-butyl peripheral groups. Herein, we present the gas sensor responses of the functionalized RGO toward benzene, toluene, and xylene (BTX) vapors. The RGO was obtained by the reduction of graphene oxide (GO) using citrate as a reducing agent, while the functionalization was achieved non-covalently by simply using ultrasonic and heating treatment. The sensor devices based on both QCM (quartz crystal microbalance) and resistive transducers were used simultaneously to understand the reactivity. Both the GO and the RGO showed less sensitivity to BTX vapors, while the RGO/PcH2tBu presented enhanced sensor responses. These results show that the p-network plays a very important role in targeting BTX vapors. The resistive response analysis allowed us to state that the RGO is a p-type semiconductor and that the interaction is governed by charge transfer, while the QCM response profiles allowed use to determine the differences between the BTX vapors. Among BTX, benzene shows the weakest sensitivity and a reactivity in the higher concentration range (>600 ppm). The toluene and xylene showed linear responses in the range of 100–600 ppm.

2016 ◽  
Vol 3 (6) ◽  
pp. 842-848 ◽  
Author(s):  
Yusuke Murashima ◽  
Mohammad Razaul Karim ◽  
Ryo Furue ◽  
Takeshi Matsui ◽  
Hiroshi Takehira ◽  
...  

Reduced graphene oxide–transition metal hybrids were accomplished to deposit a p-type semiconductor films on conductive glass for acetaldehyde sensing.


2020 ◽  
Vol 531 ◽  
pp. 147285
Author(s):  
Azhar Ali Haidry ◽  
Zhe Wang ◽  
Qawareer Fatima ◽  
Ali Zavabeti ◽  
Lijuan Xie ◽  
...  

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Yu-Sung Chang ◽  
Feng-Kuan Chen ◽  
Du-Cheng Tsai ◽  
Bing-Hau Kuo ◽  
Fuh-Sheng Shieu

AbstractIn this study, we use nitrogen-doped to improving the gas-sensing properties of reduced graphene oxide. Graphene oxide was prepared according to a modified Hummers’ method and then nitrogen-doped reduced graphene oxide (N-rGO) was synthesized by a hydrothermal method using graphene oxide and NH4OH as precursors. The rGO is flat and smooth with a sheet-like morphology while the N-rGO exhibits folded morphology. This type of folding of the surface morphology can increase the gas sensitivity. The N-rGO and the rGO sensors showed n-type and p-type semiconducting behaviors in ambient conditions, respectively, and were responsive to low concentrations of NO gases (< 1000 ppb) at room temperature. The gas-sensing results showed that the N-rGO sensors could detect NO gas at concentrations as low as 400 ppb. The sensitivity of the N-rGO sensor to 1000 ppb NO (1.7) is much better than that of the rGO sensor (0.012). Compared with pure rGO, N-rGO exhibited a higher sensitivity and excellent reproducibility.


RSC Advances ◽  
2018 ◽  
Vol 8 (12) ◽  
pp. 6600-6607 ◽  
Author(s):  
Yaguang Yun ◽  
Mingfei Pan ◽  
Guozhen Fang ◽  
Ying Gu ◽  
Wenjun Wen ◽  
...  

In the present work, a new amantadine imprinted quartz crystal microbalance sensor sensitized by Au nanoparticles and reduced graphene oxide material was fabricated by electrodeposition of o-aminothiophenol by cyclic voltammetry scanning.


ACS Nano ◽  
2020 ◽  
Vol 14 (3) ◽  
pp. 3290-3298
Author(s):  
M. M. Juvaid ◽  
Soumya Sarkar ◽  
Pranjal Kumar Gogoi ◽  
Siddhartha Ghosh ◽  
Meenakshi Annamalai ◽  
...  

2016 ◽  
Vol 40 (3) ◽  
pp. 2565-2573 ◽  
Author(s):  
Maryam Naseri ◽  
Lida Fotouhi ◽  
Ali Ehsani ◽  
Ferydon Babaei

As electro-active electrodes, composites of reduced graphene oxide and poly ortho aminophenol (POAP) with good uniformity are prepared by electropolymerization. In comparison with Ni-POAP, the Ni-rGO/POAP-modified electrode shows a higher response for methanol oxidation.


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