Publications - UEDA Lab

Publications

2024

Qixuan Zhang, Jumpei Ueda, Ruilin Zheng, Setsuhisa Tanabe,
“Near-Infrared Thermometer Based on Stark Energy Levels of Yb3+ in Garnet”
Phys. Status Solidi A (2024)
DOI: /10.1002/pssa.202400302

Michele Crozzolin, Camilla Belloni, Jian Xu, Takayuki Nakanishi, Jumpei Ueda, Setsuhisa Tanabe, Federico Dallo, Eleonora Balliana, Asia Saorin, Flavio Rizzolio, Davide Cristofori, Pietro Riello, Alvise Benedetti, Michele Back,
“Stabilizing cubic γ-Ga2O3:Cr3+ spinel nanocrystals by size confinement into mesoporous silica nanoreactor channels”
Journal of Materials Chemistry C. 12, 10929-10941 (2024)
DOI: /10.1039/D4TC01386G

Qixuan Zhang, Jumpei Ueda, Ruilin Zheng, Setsuhisa Tanabe,
“Near-Infrared Thermometer Based on Stark Energy Levels of Yb3+ in Garnet”
Phys. Status Solidi A (2024)
DOI: 10.1002/pssa.202400302

Q. Du, J. Ueda, S. Tanabe,
“Influence of trap centers on persistent luminescence of Cr3+ or Yb3+ Co-doped Y3Al2Ga3O12:Pr3+ ceramic phosphors”
Journal of the American Ceramic Society.107[8], 5524-5533 (2024)
DOI: 10.1002/adom.202302580

Qixuan Zhang, Jumpei Ueda, Setsuhisa Tanabe,
“Double-Mode Thermometer Based on Photoluminescence of YbGd2Al2Ga3O12: Cr3+ Operating in the Biological Windows”
applied sciences.14[8], 3357 (2024)
DOI: 10.1002/adom.202302580

Ying Lv, Ning Zhao, Wuqiang Li, Cunjian Lin, Changjian Chen, Jumpei Ueda,
“Highly Stable Oxynitride Persistent Phosphors with Widely Distributed Traps for Information Storage and Anticounterfeiting”
Advanced Optical Materials.12[12] (2024)
DOI: 10.1002/adom.202302580

Y. Kitagawa, J. Ueda, S. Tanabe,
“A Brief Review of Characteristic Luminescent Properties of Eu3+ in
Mixed-Anion Compounds”
Dalton Trans. 53, 8069-8092 (2024)
DOI:10.1039/D4DT00191E

Qiping Du, Jumpei Ueda, Setsuhisa Tanabe,
“Influence of sintering temperature on the persistent luminescence behavior of Y3Al2Ga3O12:Pr3+ ceramic phosphors”
Journal of the Ceramic Society of Japan. 132[3], 116-120 (2024)
DOI: 10.2109/jcersj2.23186

Qixuan Zhang, Jumpei Ueda, Ruilin Zheng, Setsuhisa Tanabe,
“Near infra-red luminescence thermometer based on Y3Al5O12: Yb3+, Cr4+
Jpn. J. Appl. Phys. 63[1], 012006 (2024)
DOI: 10.35848/1347-4065/ad14a6

2023

Zhiyu Yang, Yifei Zhao, Jumpei Ueda, Maxim S. Molokeev, Mengmeng Shang, Zhiguo Xia,
“Engineering charge-transfer interactions for red-emitting SrLa(Sc,Ga)O4:Ce3+ phosphor with improved thermal stability”
Science China Materials 66[5], 1989–1996 (2023).
DOI:10.1007/s40843-022-2315-9

Qiping Du, Jumpei Ueda, Setsuhisa Tanabe,
“Toward Color Variation of Long Persistent Luminescence in Pr3+-doped Garnet Transparent Ceramic Phosphors”
Journal of Materials Chemistry C. 11, 16225-16233 (2023).
DOI: 10.1039/D3TC03619G

Shuaiqi Liu, Jumpei Ueda, Setsuhisa Tanabe,
“Ratiometric luminescent thermometry for the third bioimaging window by Er3+ doped garnet with large Stark splitting”
Appl. Phys. Lett. 123, 161101 (2023).
DOI: 10.1063/5.0168845

Akane Wakabayashi, Yuji Masubuchi, Mikio Higuchi, Jumpei Ueda, Setsuhisa Tanabe,
“Temperature dependence of luminescence color of Mn2+-doped ZnCN2 phosphor”
Mater. Lett. 346, 134555(2023).
DOI: 10.1016/j.matlet.2023.134555

Atsunori Hashimoto, Jumpei Ueda, Yasushi Aoki, Pieter Dorenbos, Setsuhisa Tanabe,
“Hole Detrapping-Type Persistent Phosphors of RE2O2S (RE = La, Gd, Y, Lu) Doped with Eu3+–Pr3+ and Eu3+–Tb3+
J. Phys. Chem. C. 127[31], 15611–15619(2023).
DOI:10.1021/acs.jpcc.3c03251

J. Ueda, T. Minowa, J. Xu, S. Tanaka, T. Nakanishi, T. Takeda, S. Tanabe,
“Highly Thermal Stable Broadband Near-Infrared Luminescence in Ni2+-doped LaAlO3 with Charge Compensator”
ACS Appl. Opt. Mater. 1[6], 1128–1137(2023).
DOI: 10.1021/acsaom.3c00041

Q. Du, J. Ueda, R. Zheng, S. Tanabe,
“Photochromism and Long Persistent Luminescence in Pr3+-Doped Garnet Transparent Ceramic via UV or Blue Light Up-Conversion Charging”
Adv. Opt. Mater. 11 [7], 2202612(2023).
DOI:10.1002/adom.202202612

M. Back, J. Xu, J. Ueda, S. Tanabe,
“Neodymium(III)-doped Y3Al2Ga3O12 Garnet for Multipurpose Ratiometric Thermometry: From Cryogenic to High Temperature Sensing”
J. Ceram. Soc. Jpn. 131 [4], 57-61(2023) .
DOI: 10.2109/jcersj2.22167
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~ 2022