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CAPILLARY ELECTROPHORETIC SEPARATION OF GANGLIOSIDES USING CYCLODEXTRIN AS BUFFER ADDITIVE
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作者 Zhao Lou YU Li Wen CHANG Tian Sheng SU Institute of Chemistry,Academia Sinica,Beijing,100080 《Chinese Chemical Letters》 SCIE CAS CSCD 1993年第9期827-828,共2页
A new method for the rapid separation of gangliosides(GLS)by capillary electrophoresis(CE)is described which is based on the use of β—cyclodextrin(β—CD)as buffer additive.The effects of β—CD concentration,pH,ele... A new method for the rapid separation of gangliosides(GLS)by capillary electrophoresis(CE)is described which is based on the use of β—cyclodextrin(β—CD)as buffer additive.The effects of β—CD concentration,pH,electrolyte composition were dis- cussed.Under optimum conditions,the complete separation of a mixture of GM1,GD1a, GD1b and GT1b was obtained within 5 min. 展开更多
关键词 GLS CE CAPILLARY ELECTROPHORETIC SEPARATION OF GANGLIOSIDES USING CYCLODEXTRIN AS buffer additive AS
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Tin dioxide buffer layer-assisted efficiency and stability of wide-bandgap inverted perovskite solar cells 被引量:2
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作者 Bingbing Chen Pengyang Wang +3 位作者 Ningyu Ren Renjie Li Ying Zhao Xiaodan Zhang 《Journal of Semiconductors》 EI CAS CSCD 2022年第5期89-103,共15页
Inverted perovskite solar cells(IPSCs) have attracted tremendous research interest in recent years due to their applications in perovskite/silicon tandem solar cells. However, further performance improvements and long... Inverted perovskite solar cells(IPSCs) have attracted tremendous research interest in recent years due to their applications in perovskite/silicon tandem solar cells. However, further performance improvements and long-term stability issues are the main obstacles that deeply hinder the development of devices. Herein, we demonstrate a facile atomic layer deposition(ALD) processed tin dioxide(SnO2) as an additional buffer layer for efficient and stable wide-bandgap IPSCs. The additional buffer layer increases the shunt resistance and reduces the reverse current saturation density, resulting in the enhancement of efficiency from 19.23% to 21.13%. The target device with a bandgap of 1.63 eV obtains open-circuit voltage of 1.19 V, short circuit current density of 21.86 mA/cm^(2), and fill factor of 81.07%. More importantly, the compact and stable SnO_(2) film invests the IPSCs with superhydrophobicity, thus significantly enhancing the moisture resistance. Eventually, the target device can maintain 90% of its initial efficiency after 600 h storage in ambient conditions with relative humidity of 20%–40% without encapsulation. The ALD-processed SnO_(2) provides a promising way to boost the efficiency and stability of IPSCs, and a great potential for perovskite-based tandem solar cells in the near future. 展开更多
关键词 atomic layer deposition tin dioxide additional buffer layer efficiency and stability inverted perovskite solar cells
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