Palomera Netzahualcóyotl, Feng Peter
Department of Physics, University of Puerto Rico, San Juan, PR 00931, USA.
Micromachines (Basel). 2025 Mar 21;16(4):358. doi: 10.3390/mi16040358.
Different materials are studied for environmental gas sensors as well as photodetection prototypes. A ZnO/MoS p-n junction was synthetized to act as a multifunctional sensor prototype. After the ZnO was prepared on a silicon substrate by using DC sputtering at room temperature, molybdenum disulfide layers were spin-coated on a nanostructured zinc oxide flake-shaped surface to form an active layer. The heterostructure's composite surface was examined using scanning electron microscopy, energy-dispersed X-ray, and Raman spectroscopy. Responses to light frequencies, light intensities, and gas chemical tracing were characterized, revealing an enhanced multifunctional performance of the prototype. Characterizations of light-induced photocurrents indicted that the obtained response strength (photocurrent/illumination light power) was up to 0.01 A/W, and the response time was less than 5 ms. In contrast, the gas-sensing measurements showed that its response strength (variation in resistance/original resistance) was up to 3.7% and the response time was down to 150 s when the prototype was exposed to ammonia gas, with the concentration down to 168 ppm. The fabricated prototype appears to have high stability and reproducibility, quick response and recovery times, as well as a high signal-to-noise ratio.
人们研究了不同材料用于环境气体传感器以及光探测原型。合成了一种ZnO/MoS p-n结作为多功能传感器原型。在室温下通过直流溅射在硅衬底上制备ZnO后,将二硫化钼层旋涂在纳米结构的氧化锌片状表面上以形成活性层。使用扫描电子显微镜、能量色散X射线和拉曼光谱对异质结构的复合表面进行了检查。对光频率、光强度和气体化学追踪的响应进行了表征,揭示了该原型增强的多功能性能。光诱导光电流的表征表明,获得的响应强度(光电流/照明光功率)高达0.01 A/W,响应时间小于5 ms。相比之下,气敏测量表明,当该原型暴露于浓度低至168 ppm的氨气时,其响应强度(电阻变化/原始电阻)高达3.7%,响应时间降至150 s。所制备的原型似乎具有高稳定性和可重复性、快速的响应和恢复时间以及高信噪比。