ID 原文 译文
15475 制备的柔性电路展示了良好的导电性及可穿戴性,在柔性电路及智能穿戴领域有着广阔的应用前景。 The prepared flexible circuit exhibits good conductivity, wearability and has broad application prospects in the field of flexible circuits and intelligent wearable devices.
15476 以桔子皮提取液为还原剂兼保护剂,硝酸银溶液为前驱体,采用化学还原法制备了银纳米溶胶,并通过离心干燥的方法得到银纳米粉末。 Silver colloidal nanoparticles were synthesized by a simple route in water using orange peel extract as the capping agent and reducing agent, and silver nitrate solution as precursor.
15477 实验研究了提取液用量、硝酸银溶液用量对制得纳米银溶胶的影响。 The effect of the amount of silver nitrate solution and extract solution on the colloidal nanoparticles was studied.
15478 利用红外光谱、紫外-可见分光光谱仪、X射线衍射、扫描电镜、透射电镜和马尔文粒径分析仪等对所合成的样品进行了表征。 The as-prepared samples were characterized by Fourier transform infrared spectroscopy (FT-IR), X-ray powder diffraction (XRD), scanning electron microscope (SEM),transmission electron microscopy (TEM),UV-vis spectrum and laser particle size analyzer.
15479 研究表明:所合成溶胶中的银纳米粒子粒径较小,粒径均匀分布在5~20 nm之间,所制备的银粉末结晶性能较好。 The results show that the synthesized silver nanoparticles have narrow size distribution from 5 nm to 20 nm and is single crystal.
15480 桔子皮提取液用量、硝酸银溶液用量等反应条件对银粒子的粒径和形貌有着较大的影响。 The amount of silver nitrate solution and orange peel extract play vital roles to determine the size and morphology of the silver nanoparticles.
15481 在常温时,当硝酸银溶液用量为4 mL,提取液用量为5 mL,所得到的纳米银的粒径最小。 At room temperature, the smallest silver nanoparticles can be obtained when the consumption of silver nitrate solution and orange peel extract is 4 mL and 5 mL respectively.
15482 所制备的纳米银有望在电子线路、医药等行业得到应用。 The prepared silver nanoparticles could be used for electronic circuit and medicine.
15483 当前 CO2的过度排放引发了一系列的环境问题,CO2的检测技术成为气体传感器研究领域的热点。 Excessive emissions of CO, has caused environmental problems, and CO2 detection is thus one of the hot topics for scientific research.
15484 半导体 气敏传感器是气体传感器研究的主流方向之一,其中丝网印刷法是制备厚膜传感器的最常见的方法。 The semiconductor gas sensors have become one of the most important partss of gas sensors. By the way, screen printing is often used to prepare thick film sensors.