This is a demo store. No orders will be fulfilled.

High performance ammonia gas sensor based on electrospinned Co3O4 nanofibers decorated with hydrothermally synthesized MoTe2 nanoparticles

JOURNAL OF ALLOYS AND COMPOUNDS [2022]
Fengjiao Chen, Yong Zhang, Dongyue Wang, Tian Wang, Jianhua Zhang, Dongzhi Zhang
ABSTRACT

This paper introduces a room temperature NH 3 gas sensor with excellent performance based on cobalt trioxide and molybdenum telluride (Co 3 O 4 -MoTe 2 ) nanocomposite. Co 3 O 4 nanofiber was synthesized by electrospinning, and MoTe 2 nano particle was synthesized by simple hydrothermal method . MoTe 2 , Co 3 O 4 and Co 3 O 4 -MoTe 2 film sensors were prepared on interdigital electrode substrate by drop coating method. X-ray photoelectron spectroscopy (XPS), dispersive spectrometer (EDS), scanning electron microscopy (SEM), transmission electron microscopy (TEM) and X-ray diffraction (XRD) were used to observe the morphology, microstructure, and composition of the prepared nano-materials. The gas sensing performance of the pristine Co 3 O 4 , MoTe 2 and Co 3 O 4 -MoTe 2 composite film sensors were tested at room temperature. The results of experimental research show that the Co 3 O 4 -MoTe 2 gas sensor has better sensing performance for ammonia than the pure sensor, such as high response (56.20%@1ppm), excellent selectivity, good stability, short response/recovery time (7s/7s@1ppm) and low detection limit (26 ppb). The performance enhancement of the Co 3 O 4 -MoTe 2 film sensor was mainly attributed to the p-n heterojunction formed between MoTe 2 and Co 3 O 4 .

MATERIALS

Shall we send you a message when we have discounts available?

Remind me later

Thank you! Please check your email inbox to confirm.

Oops! Notifications are disabled.