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国家自然科学基金(61106010)

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相关机构:合肥工业大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划安徽省自然科学基金更多>>
相关领域:理学一般工业技术电子电信更多>>

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双波段峰值可调PdO/n-Si/PdO异质结光电探测器
2022年
通过聚苯乙烯小球模板法在硅片上制备倒金字塔微结构,并在硅片边沿制备下沉台阶,后在硅片上表面及下沉台阶上沉积Pd膜,使用氧化法获得PdO薄膜,构建PdO/n-Si/PdO光电探测器。该光电探测器在紫外-可见光区和近红外光区均具有明显的响应峰,探测峰的峰值波长随着下沉台阶的高度或工作偏压发生移动。理论模拟结果显示探测器的光谱特性可调主要是利用下沉台阶和工作偏压来改变PdO/n-Si/PdO异质结中两个背靠背PN结的所在位置的光场分布及空间电荷区实现的。
吴燕邢佳乐王全优
关键词:双波段异质结SIPBO
CTAB Assisted Synthesis of CuS Microcrystals:Synthesis,Mechanism,and Electrical Properties
2013年
CuS microcrystals were successfully prepared through a mild solvothermal reaction in ethylene glycol (EG) with the assistance of cationic surfactant cetyltrimethylammonium bromide (CTAB). An interesting morphology evolution from flower-like microspheres to hollow microspheres, and finally to smooth nanoflakes was observed when increasing the amount of CTAB. The products were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and UV-vis spectroscopy. It was found that the amount of CTAB played an important role in determining the morphology of the CuS microcrystals. Electrical measurement reveals that the as-prepared CuS microspheres were of high conductivity, which might favor their device applications. It is expected that CuS microcrystals with controlled morphologies and structures will have important applications in solar cells. This simple but effective method could also be extended to the controlled growth of other inorganic microcrystals.
Chunyan WuGuofang ZhouDun MaoZihan ZhangYiliang WuWenjian WangLinbao LuoLi WangYongqiang YuJigang HuZhifeng ZhuYan ZhangJiansheng Jie
关键词:MICROCRYSTALSSOLVOTHERMAL
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