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1.
Molecules ; 25(15)2020 Aug 04.
Artigo em Inglês | MEDLINE | ID: mdl-32759660

RESUMO

The development of high-performance sensors is of great significance for the control of the volatile organic compounds (VOCs) pollution and their potential hazard. In this paper, high crystalline V2O5 nanoparticles were successfully synthesized by a simple hydrothermal method. The structure and morphology of the prepared nanoparticles were characterized by TEM and XRD, and the cataluminescence (CTL) sensing performance was also investigated. Experiments found that the as-prepared V2O5 not only shows sensitive CTL response and good selectivity to 2-butanone, but also exhibits rapid response and recovery speed. The limit of detection was found to be 0.2 mg/m3 (0.07 ppm) at a signal to noise ratio of 3. In addition, the linear range exceeds two orders of magnitude, which points to the promising application of the sensor in monitoring of 2-butanone over a wide concentration range. The mechanism of the sensor exhibiting selectivity to different gas molecules were probed by quantum chemistry calculation. Results showed that the highest partial charge distribution, lowest HOMO-LUMO energy gap and largest dipole moment of 2-butanone among the tested gases result in it having the most sensitive response amongst other VOCs.


Assuntos
Técnicas Biossensoriais , Butanonas/análise , Medições Luminescentes/métodos , Nanopartículas/química , Compostos Orgânicos Voláteis/química , Medições Luminescentes/instrumentação , Medições Luminescentes/normas , Reprodutibilidade dos Testes , Relação Estrutura-Atividade
2.
Molecules ; 25(5)2020 Mar 01.
Artigo em Inglês | MEDLINE | ID: mdl-32121474

RESUMO

Sensitive and selective detection of harmful gas is an important task in environmental monitoring. In this work, a gas sensor based on cataluminescence (CTL) for detection of acetaldehyde was designed by using nano-NiO as the sensing material. The sensor shows sensitive response to acetaldehyde at a relatively low working temperature of 200 °C. The linear range of CTL intensity versus acetaldehyde concentration is 0.02-2.5 mg/L, with a limit of detection of 0.006 mg/L at a signal-to-noise ratio of three. Mechanism study shows that electronically excited CO2 is the excited intermediate for CTL emission during the catalytic oxidation of acetaldehyde on the NiO surface. The proposed sensor has promising application in monitoring acetaldehyde in residential buildings and in the workplace.


Assuntos
Acetaldeído/análise , Medições Luminescentes , Nanopartículas/química , Níquel/química , Catálise
3.
Molecules ; 24(23)2019 Nov 23.
Artigo em Inglês | MEDLINE | ID: mdl-31771216

RESUMO

In this work, we successfully developed a novel and sensitive gas sensor for the determination of trace acetophenone based on its cataluminescence (CTL) emission on the surface of nano-praseodymium oxide (nano-Pr6O11). The effects of working conditions such as temperature, flow rate, and detecting wavelength on the CTL sensing were investigated in detail. Under the optimized conditions, the sensor exhibited linear response to the acetophenone in the range of 15-280 mg/m3 (2.8-52 ppm), with a correlation coefficient (R2) of 0.9968 and a limit of detection (S/N = 3) of 4 mg/m3 (0.7 ppm). The selectivity of the sensor was also investigated, no or weak response to other compounds, such as alcohols (methanol, ethanol, n-propanol, iso-propanol, n-butanol), aldehyde (formaldehyde and acetaldehyde), benzenes (toluene, o-xylene, m-xylene, p-xylene), n-pentane, ethyl acetate, ammonia, carbon monoxide, carbon dioxide. Finally, the present sensor was applied to the determination of acetophenone in human exhaled breath samples. The results showed that the sensor has promising application in clinical breath analysis.


Assuntos
Acetofenonas/análise , Neoplasias da Mama/diagnóstico , Óxidos/síntese química , Praseodímio/química , Técnicas Biossensoriais , Neoplasias da Mama/química , Testes Respiratórios , Catálise , Feminino , Humanos , Luminescência , Nanopartículas/química , Óxidos/química , Propriedades de Superfície
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