Acetic acid gas sensors based on Ni2+doped ZnO nanorods prepared by using the solvothermal method

2012 ◽  
Vol 33 (11) ◽  
pp. 112003 ◽  
Author(s):  
Zhiming Cheng ◽  
Sumei Zhou ◽  
Tongyun Chen ◽  
Yongping Dong ◽  
Wangbing Zhang ◽  
...  
2017 ◽  
Vol 4 (7) ◽  
pp. 075032 ◽  
Author(s):  
J L Cervantes-López ◽  
R Rangel ◽  
M García-Méndez ◽  
H Tiznado ◽  
O Contreras ◽  
...  

2011 ◽  
Vol 131 (1-2) ◽  
pp. 27-31 ◽  
Author(s):  
Xiangfeng Chu ◽  
Sumei Zhou ◽  
Yongping Dong ◽  
Wenqi Sun ◽  
Xiutao Ge

2014 ◽  
Vol 40 (7) ◽  
pp. 10867-10875 ◽  
Author(s):  
Chi-Jung Chang ◽  
Chang-Yi Lin ◽  
Jem-Kun Chen ◽  
Mu-Hsiang Hsu

2018 ◽  
Vol 11 (1) ◽  
pp. 1411-1419 ◽  
Author(s):  
Gitae Namgung ◽  
Qui Thanh Hoai Ta ◽  
Woochul Yang ◽  
Jin-Seo Noh

Author(s):  
Sabah M. Ahmed

Introduction: In recent years a metal oxide semiconductors have been paid attention due to their excellent chemical and physical properties. ZnO (Zinc oxide) is considered as one of the most attractive semiconductor materials for implementation in photo-detectors, gas sensors, photonic crystals, light emitting diodes, photodiodes, and solar cells, due to its novel electrical and optoelectronic properties. There are different uses of metal oxide semiconductors such us, UV photodetectors which are useful in space research’s, missile warning systems, high flame detectors, air quality spotting, gas sensors, and precisely calculated radiation for the treatment of UV-irradiated skin. ZnO is a metal oxide semiconductors and it is used as a transparent conducting oxide thin film because it has the best higher thermal stability, best resistance against the damage of hydrogen plasma processing and relatively cheaper if one compares it with ITO. Materials and Methods: On glass substrates, Al-doped ZnO (AZO) nanorods have been grown by a low -cost chemical bath deposition (CBD) method at low temperature. The seed layer of ZnO was coated on glass substrates. The effect of the Al-doping on the aligned, surface morphology, density, distribution, orientation and structure of ZnO nanorods are investigated. The Al-doping ratios are 0%, 0.2%, 0.8% and 2%. The Aluminum Nitrate Nonahydrate (Al (NO3)3.9H2O) was added to the growth solution, which is used as a source of the aluminum dopant element. The morphology and structure of the Al-doped ZnO nanorods are characterized by field emission scanning electron microscopy (FESEM) and high-resolution X-ray diffractometer (XRD). using the radio RF (Radio frequency) magnetron technique. Results and Discussion: The results show that the Al-doping have remarkable effects on the topography parameters such as diameter, distribution, alignment, density and nanostructure shape of the ZnO nanorods. These topography parameters have proportionally effective with increases of the Al-doping ratio. Also, X-ray diffraction results show that the Al-doping ratio has a good playing role on the nanostructure orientation of the ZnO nanorods. Conclusions: The Aluminum Nitride Nanohydrate considered as a good Aluminum source for doping ZnONR.  It is clear from FESEM results that the Al-doping of ZnONR has a remarkable effect on the surface topography of nanorods for all aluminum doping ratios. From XRD patterns, it concludes that as the Al-doping ratio increases, the reorientation of the nanostructure of ZnO increases towards [100] direction. The results obtained also have shown that the average diameter of a nanorod is increased with increasing the ratio of Al-doping.


2015 ◽  
Vol 815 ◽  
pp. 458-463
Author(s):  
Zao Yang ◽  
Quan Hui Liu ◽  
Tai Hong Wang ◽  
Yun Bing Wang

N-shaped ZnO nanorods were first chirality synthesized by glacial acetic acid assisted annealing process. X-ray powder diffraction results show that these nanorods are of ZnO wurtzite-structure. These nanorods grow from a thin platelet base and are parallel to each other to form n-shaped ZnO nanorods. The width of thin platelet bases range from 50 to 130 nm. The diameters of the nanorods rang from 25 to 60nm, and their lengths are 0.2—0.6um. Gas sensors fabricated from these n-shaped ZnO nanorods show a very high sensitivity to ethanol gas and the sensitivity is up to about 35 against 1000 ppm ethanol gas at the operating temperature of 300°C.


2021 ◽  
Vol 60 (2) ◽  
pp. 864-874
Author(s):  
Alok K. Singh ◽  
Nivedita Shukla ◽  
Dinesh K. Verma ◽  
Kavita ◽  
Bharat Kumar ◽  
...  
Keyword(s):  

2021 ◽  
Vol 16 (1) ◽  
Author(s):  
Muhammad Ikram ◽  
Sidra Aslam ◽  
Ali Haider ◽  
Sadia Naz ◽  
Anwar Ul-Hamid ◽  
...  

AbstractVarious concentrations of Mg-doped ZnO nanorods (NRs) were prepared using co-precipitation technique. The objective of this study was to improve the photocatalytic properties of ZnO. The effect of Mg doping on the structure, phase constitution, functional groups presence, optical properties, elemental composition, surface morphology and microstructure of ZnO was evaluated with XRD, FTIR, UV–Vis spectrophotometer, EDS, and HR-TEM, respectively. Optical absorption spectra obtained from the prepared samples showed evidence of blueshift upon doping. XRD results revealed hexagonal wurtzite phase of nanocomposite with a gradual decrease in crystallite size with Mg addition. PL spectroscopy showed trapping efficiency and migration of charge carriers with electron–hole recombination behavior, while HR-TEM estimated interlayer d-spacing. The presence of chemical bonding, vibration modes and functional groups at the interface of ZnO was revealed by FTIR and Raman spectra. In this study, photocatalytic, sonocatalytic and sonophotocatalytic performance of prepared NRs was systematically investigated by degrading a mixture of methylene blue and ciprofloxacin (MBCF). Experimental results suggested that improved degradation performance was shown by Mg-doped ZnO NRs. We believe that the product synthesized in this study will prove to be a beneficial and promising photocatalyst for wastewater treatment. Conclusively, Mg-doped ZnO exhibited substantial (p < 0.05) efficacy against gram-negative (G-ve) as compared to gram-positive (G+ve) bacteria. In silico molecular docking studies of Mg-doped ZnO NRs against DHFR (binding score: − 7.518 kcal/mol), DHPS (binding score: − 6.973 kcal/mol) and FabH (− 6.548 kcal/mol) of E. coli predicted inhibition of given enzymes as possible mechanism behind their bactericidal activity.


Sign in / Sign up

Export Citation Format

Share Document