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收藏Pushing the envelope of physical vapor deposited thin-film based solid oxide fuel cells for 500 °C operation: Securing 1 W cm-2 performance, 1000 h stability, scale up to 15 W power, and associated limitations推动基于物理气相沉积薄膜的固体氧化物燃料电池在500 °C下运行:实现1 W cm-2性能、1000 h稳定性、功率放大至15 W以及相关限制
Park, Jung Hoon; Oh, Seongkook; Yang, Byung Chan; Kim, Dong Hwan; Thieu, Cam-Anh; Hong, Jeeho; Park, Jeong Hwa; Lee, Jong-Ho; Yoon, Kyung Joong; Ji, Ho-Il; Lee, Kang Taek; Yang, Sungeun; Son, Ji-Won
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收藏Enhanced electron conductivity, stability, and electrochemical performance of MXene-coated manganese and iron oxides as negative electrode of supercapacitorsMXene包覆的锰和铁氧化物作为超级电容器负极的增强的电子电导率,稳定性和电化学性能
Jung, Moo Young; Oh, Yongsuk; Eom, Subin; Park, Jihye; Lee, Chanyong; Pandey, Sudeshana; Kim, Taemin; Lee, Hae-Seok; Son, Ji-Won; Yun, Yong Ju; Jun, Yongseok
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收藏Failure of protonic ceramic fuel cells (PCFCs) under gaseous Cr and CO2 exposure and the introduction of a protective barrier layer for mitigation在气态Cr和CO2暴露下质子陶瓷燃料电池(PCFCs)的失效及引入保护屏障层进行缓解
Lim, Yeji; Chong, Jong Heon; Guha, Puspendu; Lee, Wan-Jae; Cho, Inhyeok; Oh, Seol Hee; Kim, Junseok; Yoon, Kyung Joong; Son, Ji-Won; Lee, Jong-Ho; Choi, Sihyuk; Kwon, Deok-Hwang; Ji, Ho-Il; Yang, Sungeun
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收藏Dual-Phase Reaction Sintering for Overcoming the Inherent Sintering Ability of Refractory Electrolytes in Protonic Ceramic Cells双相反应烧结,用于克服质子陶瓷电池中难熔电解质的固有烧结能力
Kim, Junseok; Yun, Jiwon; Lee, Wanjae; Kim, Do-Hyeong; Guha, Puspendu; Hwang, Jin-Ha; Kwon, Deok-Hwang; Yang, Sungeun; Lee, Jong-Ho; Yoon, Kyung Joong; Son, Ji-Won; Nahm, Sahn; Choi, Sihyuk; Ji, Ho-Il
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