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Room temperature trace level detection of NO2 gas using SnO2 modified carbon nanotubes based sensor

机译:使用SnO2修饰的碳纳米管基传感器检测NO2气体的室温痕量水平

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摘要

A hybrid SnO2 modified multiwalled carbon nanotubes (MWCNTs) gas sensor is developed for the trace level (100 ppb) detection of NO2 gas at room temperature. A simple method is applied for the synthesis of a hybrid sensor; SnO2-modilied multiwalled carbon nanotubes (MWCNTs), in which MWCNT bundles are uniformly coated in situ with SnO2 nanoparticles (~4 nm). The concentration of MWCNTs has been varied and the hybrid MWCNT-SnO2 sensor prepared using an optimum content of MWCNT (5 mg) is found to exhibit enhanced sensing response characteristics (response = 5.5 × 10~3) towards 100 ppb NO2 gas at a low operating temperature of 50 °C, with comparatively faster response and recovery speeds of 2.3 min and 6.8 min, respectively, as compared to sensor structure based structures based on thin films of pure SnO2 nanoparticles (response = 1.01 × 10~2). The hybrid sensor also exhibits a good response (1.07 × 10~3) to 100 ppb NO2.gas at room temperature. Extensive modulation of the space charge regions formed at the interface of n-type semiconducting nanoparticles of SnO2 with p-type MWCNTs with interaction to the NO2 gas along with providing the conducting channels by CNTs for charge carriers are responsible for the enhanced response characteristics of the hybrid sensor.
机译:开发了一种混合SnO2修饰的多壁碳纳米管(MWCNTs)气体传感器,用于在室温下痕量(100 ppb)的NO2气体检测。一种简单的方法被应用于混合传感器的合成。 SnO2修饰的多壁碳纳米管(MWCNT),其中MWCNT束被SnO2纳米颗粒(〜4 nm)均匀地原位涂覆。 MWCNT的浓度已发生变化,发现使用最佳含量的CNT(5 mg)制备的MWCNT-SnO2混合传感器在低浓度下对100 ppb NO2气体表现出增强的感测响应特性(响应= 5.5×10〜3)。与基于纯SnO2纳米颗粒薄膜的基于传感器结构的结构(响应= 1.01×10〜2)相比,工作温度为50°C,响应速度和恢复速度分别更快,分别为2.3分钟和6.8分钟。混合传感器在室温下对100 ppb NO2气体也表现出良好的响应(1.07×10〜3)。大量调节在SnO2的n型半导体纳米颗粒与p型MWCNT的界面上形成的空间电荷区域,该空间电荷区域与NO2气体相互作用,并通过CNT为电荷载流子提供导电通道,这导致了电荷响应特性的增强。混合传感器。

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