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利用聚苯胺-氧化镁纳米复合材料优化氨检测

Optimizing Ammonia Detection with a Polyaniline-Magnesia Nano Composite.

作者信息

Ganachari Sharanabasava V, Shilar Fatheali A, Patil Veerabhadragouda B, Khan T M Yunus, Saleel C Ahamed, Ali Mohammed Azam

机构信息

Center for Energy and Environment, School of Advanced Sciences, KLE Technological University BVB Campus Vidyanagar, Hubballi 80031, Karnataka, India.

Department of Civil Engineering, Jain College of Engineering, Belagavi 590014, Karnataka, India.

出版信息

Polymers (Basel). 2024 Oct 14;16(20):2892. doi: 10.3390/polym16202892.

Abstract

Polyaniline-magnesia (PANI/MgO) composites with a fibrous nanostructure were synthesized via in situ oxidative polymerization, enabling uniform MgO integration into the polyaniline matrix. These composites were characterized using FTIR spectroscopy to analyze intermolecular bonding, XRD to assess crystallographic structure and phase purity, and SEM to examine surface morphology and topological features. The resulting PANI/MgO nanofibers were utilized to develop ammonia (NH) gas-sensing probes with evaluations conducted at room temperature. The study addresses the critical challenge of achieving high sensitivity and selectivity in ammonia detection at low concentrations, which is a problem that persists in many existing sensor technologies. The nanofibers demonstrated high selectivity and optimal sensitivity for ammonia detection, which was attributed to the synergistic effects between the polyaniline and MgO that enhance gas adsorption. Furthermore, the study revealed that the MgO content critically influences both the morphology and the sensing performance, with higher MgO concentrations improving sensor response. This work underscores the potential of PANI/MgO composites as efficient and selective ammonia sensors, highlighting the importance of MgO content in optimizing material properties for gas-sensing applications.

摘要

通过原位氧化聚合法合成了具有纤维状纳米结构的聚苯胺 - 氧化镁(PANI/MgO)复合材料,使氧化镁能够均匀地整合到聚苯胺基体中。使用傅里叶变换红外光谱(FTIR)对这些复合材料进行表征,以分析分子间键合;使用X射线衍射(XRD)评估晶体结构和相纯度;使用扫描电子显微镜(SEM)检查表面形态和拓扑特征。所得的PANI/MgO纳米纤维被用于开发氨气(NH₃)气敏探针,并在室温下进行评估。该研究解决了在低浓度氨气检测中实现高灵敏度和选择性这一关键挑战,这是许多现有传感器技术中持续存在的问题。纳米纤维对氨气检测表现出高选择性和最佳灵敏度,这归因于聚苯胺和氧化镁之间的协同效应增强了气体吸附。此外,研究表明氧化镁含量对形态和传感性能都有至关重要的影响,较高的氧化镁浓度可提高传感器响应。这项工作强调了PANI/MgO复合材料作为高效且选择性氨气传感器的潜力,突出了氧化镁含量在优化气敏应用材料性能方面的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c55/11511220/aadf94bdd059/polymers-16-02892-g001.jpg

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