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Highly impermeable and flexible silica encapsulation films synthesized by sol-gel process 被引量:1
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作者 Si-Hoon Kim Gyeong-Seok Hwang +6 位作者 Donghwan Koo Dong-Hyun Seo Ye-Pil Kwon hansuek lee Hyesung Park Eun-chae Jeon Ju-Young Kim 《Nano Research》 SCIE EI CSCD 2022年第8期7476-7483,共8页
Silica thin films synthesized sol–gel process are proposed as flexible encapsulation materials.A sol–gel process provides a dense and stable amorphous silica structure,yielding an extremely high elastic deformation ... Silica thin films synthesized sol–gel process are proposed as flexible encapsulation materials.A sol–gel process provides a dense and stable amorphous silica structure,yielding an extremely high elastic deformation limit of 4.9%and extremely low water vapor transmission rate(WVTR)of 2.90×10^(−4)g/(m^(2)∙day)at 60℃and relative humidity of 85%.The WVTR is not degraded by cyclic bending deformations for the bending radius corresponding to a tensile strain of 3.3%in the silica encapsulation film,implying that the silica thin film is robust against the formation of pinhole-type defects by cyclic bending deformations.Flexible organic solar cells encapsulated with the silica films operate without degradation in power conversion efficiency for 50,000 bending cycles for a bending radius of 6 mm. 展开更多
关键词 silica thin film SOL-GEL flexible encapsulation mechanical reliability flexible organic solar cell
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Semi-Empirical, Multi-Wavelength Raman Gain Engineering Algorithm with Pump Interaction Compensation Technique
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作者 Jaehyoung Park Jonghan Park +1 位作者 hansuek lee Namkyoo Park 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期407-408,共2页
We propose a simple algorithm for the precise engineering of multi-channel gain profile of Raman amplifier. By employing a linear approximation in the pump interaction calculation, together with a semi-empirical pump ... We propose a simple algorithm for the precise engineering of multi-channel gain profile of Raman amplifier. By employing a linear approximation in the pump interaction calculation, together with a semi-empirical pump power correction using the simplistic output signal spectrum measurement, excellent gain engineering capability has been demonstrated for various target gain profiles, within +/- 0.4dB of error. 展开更多
关键词 with in length from SEMI-EMPIRICAL Multi-Wavelength Raman Gain Engineering Algorithm with Pump Interaction Compensation Technique
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