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Intense single-band red upconversion emission in BiOCl:Er3+ layered semiconductor via co-doping Ho3+

查看全文 作  者:Yuehong [1,2]Peng;Jincai [1,3]Peng;Jiajun [1]Han;Tianhui [1]Wang;Zhaoyi [1]Yin;Jianbei [1]Qiu;Qi W [1]ang;Zhengwen [1]Yang;Zhiguo [1]Song 高影响力作者 机构地区:[1] School of Materials Science and Engineering,Kunming University of Science and Technology,Kunming 650093,China;[2] School of Physics and Electronical Science,Chuxiong Normal University,Chuxiong 675000,China;[3] Dean's Office,Sichuan University of Arts and Science,Dazhou 635000,China高影响力机构 出  处:《Journal of Rare Earths》索引2020年第38卷第6期,共7页高影响力期刊 基  金:the National Natural Science Foundation of China(11874186);the Applied Basic Research Program of Yunnan Province(2017FB079);the Reserve Talents Project of Yunnan Province(2015HB013);the Scientific Research Foundation of the Education Department of Yunnan Province(2018JS452)。 摘  要:Exploring a new tuning way to facilely realize single-band red emission in trivalent rare-earth ions(RE3+) doped upconversion(UC) materials is still desirable.In this work,the intense single-band red emission is achieved by co-doping only Ho3+in the BiOCl:Er3+ under 1550 nm excitation.In the BiOCl layered host,co-doping Ho3+can further enhance the red emission and simultaneously suppress the green emission of Er3+,and thus obviously improve the red-to-green(R/G) ratio.It is found that Ho3+does not se rve as ene rgy trapping through the 5 I6 state as in traditional UC materials but acts as ET bridge(4 S3/2,2 H11/2(Er3+)→5 F4,5 S2(Ho3+)→4 F9/2(Er3+)).The tuning mechanism of Ho3+is discussed in detail and further confirms through a comparative experiment.Our research gives an unusual perspective to tune the UC behavior of Er3+through co-doping Ho3+,which might be inspiring for achievement of single-band red UC emission. 关 键 词:Single-band red emission BiOCl ER3+ Ho3+ Rare Earths
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