材料科学
氨气
兴奋剂
氨
纳米结构
纳米技术
化学工程
光电子学
有机化学
化学
工程类
作者
Sushilkumar A. Jadhav,G. Umadevi,M. B. Awale,K. S. Kanse,Y.S. Joshi,Y. Purushotham,S. D. Lokhande,V. D. Mote
标识
DOI:10.1016/j.matlet.2025.138343
摘要
• 2% and 4% Mg doped ZnO nanostructures synthesized via chemical spray pyrolysis technique. • Prepared samples show hexagonal (wurtzite) structure with XRD peaks aligned towards c-axis (preferred orientation). • Crumby, Intertwined root like morphology for 4% Mg doped ZnO sample was achieved. • 4 % Mg doped ZnO nanostructures were highly selective and exhibited elevated response for 5 ppm NH 3 gas concentration at RT. • 4 % Mg doped ZnO root like nanostructures yielded robust response and recovery times (30 s and 7 s) towards ammonia gas. This work presents the synthesis of Mg-ZnO root-like nanostructures using chemical spray pyrolysis. Structural, morphological, gas sensing and optical properties were investigated. The films exhibit a hexagonal wurtzite ZnO crystal structure. Morphology changes from grain-like (2 % Mg) to root-like (4 % Mg). The 4 % Mg-ZnO nanostructures detect 5 ppm ammonia gas with a quick response (30 s) and recovery time (7 s). Higher Mg doping influences the optical energy bandgap. Mg-ZnO is a promising material for ammonia gas sensors and optoelectronic devices due to its gas sensing and optical properties.
科研通智能强力驱动
Strongly Powered by AbleSci AI