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作 者:Eugene A.Katz
机构地区:[1]Alexandre Yersin Department of Solar Energy and Environmental Physics, J. Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Sede Boqer Campus 8499000, Israel [2]Ilse-Katz Institute for Nanoscale Science and Technology, Ben-Gurion University of the Negev, Beer Sheva 8410501, lsrael
出 处:《Science China Chemistry》2017年第10期1326-1327,共2页中国科学(化学英文版)
摘 要:As the technological development of large single-crystalline wafers have revolutionized many industries including electronics and photovoltaics,one can predict that the availability of large single-crystalline perovskite crystals and wafers can revolutionize its broad applications in photodetectors,solar cells,LEDs,lasers,etc.In 2015,Liu et al.As the technological development of large single-crystalline wafers have revolutionized many industries including electronics and photovoltaics,one can predict that the availability of large single-crystalline perovskite crystals and wafers can revolutionize its broad applications in photodetectors,solar cells,LEDs,lasers,etc.In 2015,Liu et al.[1]at Shaanxi Normal University developed a reactive inverse-temperature crystallization(RITC)method and harvested high quality MAPbI_3
关 键 词:crystalline halide perovskite technological electronics inverse optoelectronic wafer availability render
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