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高增益高转化效率LD侧面泵浦模块的研究 被引量:1
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作者 王超 韩金樑 +1 位作者 王宇恒 金光勇 《激光与红外》 CAS CSCD 北大核心 2016年第6期688-691,共4页
采用光电探测器和脉冲电流钳对泵浦波形和激光输出信号进行采集,通过示波器判断激光起振时间,从而判断激光增益大小。比较了激光晶体半径分别为1.5 mm、2 mm、2.5 mm三种条件下LD侧面泵浦模块的增益特性。结果表明,激光晶体半径相对较小... 采用光电探测器和脉冲电流钳对泵浦波形和激光输出信号进行采集,通过示波器判断激光起振时间,从而判断激光增益大小。比较了激光晶体半径分别为1.5 mm、2 mm、2.5 mm三种条件下LD侧面泵浦模块的增益特性。结果表明,激光晶体半径相对较小时,激光建立时间短,因此增益高,输出激光能量大,光-光转化效率高。 展开更多
关键词 起振时间 增益 晶体半径 光-光转化效率
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An integrated thermoelectric-assisted photoelectrochemical system to boost water splitting 被引量:7
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作者 Yuyang Kang Runze Chen +3 位作者 Chao Zhen Lianzhou Wang Gang Liu Hui-Ming Cheng 《Science Bulletin》 SCIE EI CAS CSCD 2020年第14期1163-1169,M0003,共8页
Common solar-driven photoelectrochemical(PEC) cells for water splitting were designed by using semiconducting photoactive materials as working photoelectrodes to capture sunlight. Due to the thermodynamic requirement ... Common solar-driven photoelectrochemical(PEC) cells for water splitting were designed by using semiconducting photoactive materials as working photoelectrodes to capture sunlight. Due to the thermodynamic requirement of 1.23 eV and kinetic energy loss of about 0.6 eV, a photo-voltage of 1.8 V produced by PEC cells is generally required for spontaneous water splitting. Therefore, the minimum bandgap of1.8 eV is demanded for photoactive materials in single-photoelectrode PEC cells, and the bandgap of about 1 eV for back photoactive materials is appropriate in tandem PEC cells. All these PEC cells cannot effectively utilize the infrared light from 1250 to 2500 nm. In order to realize the full spectrum utilization of solar light, here, we develop a solar-driven PEC water splitting system integrated with a thermoelectric device. The key feature of this system is that the thermoelectric device produces a voltage as an additional bias for the PEC system by using the temperature difference between the incident infrared-light heated aqueous electrolyte in the PEC cell as the hot source and unirradiated external water as the cold source. Compared to a reference PEC system without the thermoelectric device, this system has a significantly improved overall water splitting activity of 1.6 times and may provide a strategy for accelerating the application of full spectrum solar light-driven PEC cells for hydrogen production. 展开更多
关键词 PHOTOELECTROCHEMICAL Water splitting THERMOELECTRIC Hydrogen
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