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高效三功能层单晶薄膜太阳电池的研究 被引量:5
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作者 李果华 李国昌 LPeraldoBicelli 《太阳能学报》 EI CAS CSCD 北大核心 1998年第2期172-177,共6页
讨论了ZnSe/GaAs/Ge等三功能层梯度掺杂异质单晶薄膜复合光电极的结构,分析了把它用于光电化学太阳电池、光伏太阳电池、肖特基光伏太阳电池时的工作机理及优点。实验结果验证了理论分析。在进一步提高太阳电池转换效率方... 讨论了ZnSe/GaAs/Ge等三功能层梯度掺杂异质单晶薄膜复合光电极的结构,分析了把它用于光电化学太阳电池、光伏太阳电池、肖特基光伏太阳电池时的工作机理及优点。实验结果验证了理论分析。在进一步提高太阳电池转换效率方面,该复合光电极值得进一步研究。 展开更多
关键词 异质缓变结 单晶薄膜复合 电池 薄膜太阳电池
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声表面波器件晶圆键合工艺研究 被引量:1
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作者 卢丹丹 米佳 +2 位作者 彭兴文 谭昕怡 金中 《压电与声光》 CAS 北大核心 2020年第3期361-364,共4页
声表面波器件向小型化、集成化、更高性能方向发展,需要制作复合单晶薄膜和采用晶圆级封装。该文针对关键工艺中的晶圆键合工艺开展研究,提出工艺要求,简述有关键合工艺要求和设备特点,并进行了金属键合工艺验证。实验证明,设备和工艺... 声表面波器件向小型化、集成化、更高性能方向发展,需要制作复合单晶薄膜和采用晶圆级封装。该文针对关键工艺中的晶圆键合工艺开展研究,提出工艺要求,简述有关键合工艺要求和设备特点,并进行了金属键合工艺验证。实验证明,设备和工艺能满足产品封装要求。 展开更多
关键词 声表面波器件 晶圆级封装 复合单晶薄膜 晶圆键合 设备特点
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120 mm Single-crystalline perovskite and wafers: towards viable applications 被引量:9
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作者 Yucheng Liu Xiaodong Ren +13 位作者 Jing Zhang Zhou Yang Dong Yang Fengyang Yu Jiankun Sun Changming Zhao Zhun Yao Bo Wang Qingbo Wei Fengwei Xiao Haibo Fan Hao Deng Liangping Deng Shengzhong (Frank) Liu 《Science China Chemistry》 SCIE EI CAS CSCD 2017年第10期1367-1376,共10页
As the large single-crystalline silicon wafers have revolutionized many industries including electronics and solar cells, it is envisioned that the availability of large single-crystalline perovskite crystals and wafe... As the large single-crystalline silicon wafers have revolutionized many industries including electronics and solar cells, it is envisioned that the availability of large single-crystalline perovskite crystals and wafers will revolutionize its broad applications in photovoltaics, optoelectronics, lasers, photodetectors, light emitting diodes(LEDs), etc. Here we report a method to grow large single-crystalline perovskites including single-halide crystals: CH3NH3PbX3(X=I, Br, Cl), and dual-halide ones:CH3NH3Pb(ClxBr1.x)3 and CH3NH3Pb(BrxI1.x)3, with the largest crystal being 120 mm in length. Meanwhile, we have advanced a process to slice the large perovskite crystals into thin wafers. It is found that the wafers exhibit remarkable features:(1)its trap-state density is a million times smaller than that in the microcrystalline perovskite thin films(MPTF);(2) its carrier mobility is 410 times higher than its most popular organic counterpart P3HT;(3) its optical absorption is expanded to as high as910 nm comparing to 797 nm for the MPTF;(4) while MPTF decomposes at 150 °C, the wafer is stable at high temperature up to270 °C;(5) when exposed to high humidity(75% RH), MPTF decomposes in 5 h while the wafer shows no change for overnight;(6) its photocurrent response is 250 times higher than its MPTF counterpart. A few electronic devices have been fabricated using the crystalline wafers. Among them, the Hall test gives low carrier concentration with high mobility. The trap-state density is measured much lower than common semiconductors. Moreover, the large SC-wafer is found particularly useful for mass production of integrated circuits. By adjusting the halide composition, both the optical absorption and the light emission can be fine-tuned across the entire visible spectrum from 400 nm to 800 nm. It is envisioned that a range of visible lasers and LEDs may be developed using the dual-halide perovskites. With fewer trap states, high mobility, broader absorption, and humidity resistance, it is expected that solar cells with high stable efficiency maybe attainable using the crystalline wafers. 展开更多
关键词 single-crystal growth perovskite wafer IC devices photodetector array
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