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在铜纳米粒子电溶解基础上,于碳纤维布表面原位生长三维玫瑰花状铜纳米粒子以增强对氨的传感性能。

In-situ growth of 3D rosette-like copper nanoparticles on carbon cloth for enhanced sensing of ammonia based on copper electrodissolution.

机构信息

Institute of Life Science, And Laboratory of Tissue and Cell Biology, Lab Teaching & Management Center, Chongqing Medical University, Chongqing, 400016, China.

Institute of Life Science, And Laboratory of Tissue and Cell Biology, Lab Teaching & Management Center, Chongqing Medical University, Chongqing, 400016, China.

出版信息

Anal Chim Acta. 2020 Apr 1;1104:60-68. doi: 10.1016/j.aca.2020.01.010. Epub 2020 Jan 8.

Abstract

Copper is an attractive candidate for sensing ammonia. Here, an electrodissolution mechanism for measuring liquid-phase ammonia was developed via a novel three-dimensional rosette-like structure of copper nanoparticles (CuNPs) integrated onto carbon cloth (CuNPs/CC). A one-step hydrothermal synthetic procedure was employed to construct the metallic CuNPs with a stereo rosette-like pattern on flexible CC substrate. The morphology, composition and sensing performance of the as-prepared composite were characterised in detail. The CuNPs/CC composite showed excellent sensing performance to ammonia, which is attributed to the electrodissolution of CuNPs being promoted by ammonia to form a stabilised copper-ammonia complex. This electrochemical response occurs without the electro-oxidation of ammonia, thus avoiding the energy barrier of the N-N bond and the toxicity of N-adsorbates, which is advantageous for ammonia detection. In addition, the sensor also shows very high sensitivity to ammonia with a low detection limit, as well as good anti-interference performance, repeatability and stability. The high accuracy and precision for the quantification of ammonia concentration in a variety of real samples indicate that the CuNPs/CC composition has potential in the development of high-performance ammonia sensors.

摘要

铜是一种很有吸引力的氨传感候选材料。在这里,通过将铜纳米粒子(CuNPs)集成到碳纤维布(CuNPs/CC)上的新型三维玫瑰花状结构,开发了一种用于测量液相氨的电溶解机制。采用一步水热合成法,在柔性 CC 基底上构建了具有立体玫瑰花状图案的金属 CuNPs。详细地对所制备的复合材料的形态、组成和传感性能进行了表征。CuNPs/CC 复合材料对氨表现出优异的传感性能,这归因于氨促进了 CuNPs 的电溶解,形成了稳定的铜-氨络合物。这种电化学响应不会发生氨的电氧化,从而避免了 N-N 键的能垒和 N 吸附物的毒性,有利于氨的检测。此外,该传感器对氨也具有非常高的灵敏度和低检测限,以及良好的抗干扰性能、重复性和稳定性。CuNPs/CC 复合材料对各种实际样品中氨浓度的定量具有很高的准确性和精密度,表明其在开发高性能氨传感器方面具有潜力。

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