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author:

Lin, J. (Lin, J..) [1] | Zhou, Y. (Zhou, Y..) [2] | Lu, Q. (Lu, Q..) [3] | Wu, X. (Wu, X..) [4] | Lin, C. (Lin, C..) [5] | Lin, T. (Lin, T..) [6] | Xue, K.-H. (Xue, K.-H..) [7] | Miao, X. (Miao, X..) [8] | Sa, B. (Sa, B..) [9] | Sun, Z. (Sun, Z..) [10]

Indexed by:

Scopus

Abstract:

By simply doping with a certain amount of Sm3+, opaque lead-free (K0.5Na0.5)NbO3 piezoelectric ceramics were fabricated into transparent/translucent ceramics. The photochromic (PC) behavior and associated reversible transmittance/luminescence modulation were realized via physical means. Upon illumination under a xenon lamp, the maximal decreased values of optical transmittance and luminescence intensity are 36.1% and 49%, respectively. Meanwhile, the colors of all the ceramics turn darker after illumination, and subsequently return to their initial states by thermal stimulus (200 °C for 5 minutes), exhibiting a typical PC phenomenon. Combining experimental and calculation results, it can be found that the PC mechanism is closely related to the vacancy defects induced by both higherature sintering and Sm3+-doping. Additionally, the Sm3+ effects on phase structures, microstructures, optical transmittance and photoluminescence properties of the ceramics were systematically studied. The substitution behavior of Sm3+ and vacancy defect concentrations on the energy band gap of the material were unraveled by the first principles calculations to further clarify the corresponding mechanism. The Sm3+-doped (K0.5Na0.5)NbO3 transparent ceramics have potential for application in modulation and conversion of photoenergy, such as in optical memory and photo-switching devices. And the reversible tuning of transmittance in our material is especially attractive for exploring novel transparent PC materials. © 2019 The Royal Society of Chemistry.

Keyword:

Community:

  • [ 1 ] [Lin, J.]Key Laboratory of Eco-materials Advanced Technology, College of Materials Science and Engineering, Fuzhou University, Fuzhou, China
  • [ 2 ] [Zhou, Y.]Key Laboratory of Eco-materials Advanced Technology, College of Materials Science and Engineering, Fuzhou University, Fuzhou, China
  • [ 3 ] [Lu, Q.]Key Laboratory of Eco-materials Advanced Technology, College of Materials Science and Engineering, Fuzhou University, Fuzhou, China
  • [ 4 ] [Wu, X.]Key Laboratory of Eco-materials Advanced Technology, College of Materials Science and Engineering, Fuzhou University, Fuzhou, China
  • [ 5 ] [Lin, C.]Key Laboratory of Eco-materials Advanced Technology, College of Materials Science and Engineering, Fuzhou University, Fuzhou, China
  • [ 6 ] [Lin, T.]Key Laboratory of Eco-materials Advanced Technology, College of Materials Science and Engineering, Fuzhou University, Fuzhou, China
  • [ 7 ] [Xue, K.-H.]Wuhan National Laboratory for Optoelectronics, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, 430074, China
  • [ 8 ] [Miao, X.]Wuhan National Laboratory for Optoelectronics, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, 430074, China
  • [ 9 ] [Sa, B.]Key Laboratory of Eco-materials Advanced Technology, College of Materials Science and Engineering, Fuzhou University, Fuzhou, China
  • [ 10 ] [Sun, Z.]School of Materials Science and Engineering, Center for Integrated Computational Materials Science, International Research Institute for Multidisciplinary Science, Beihang University, Beijing, 100191, China

Reprint 's Address:

  • [Wu, X.]Key Laboratory of Eco-materials Advanced Technology, College of Materials Science and Engineering, Fuzhou UniversityChina

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Source :

Journal of Materials Chemistry A

ISSN: 2050-7488

Year: 2019

Issue: 33

Volume: 7

Page: 19374-19384

1 1 . 3 0 1

JCR@2019

1 0 . 8 0 0

JCR@2023

ESI HC Threshold:236

JCR Journal Grade:1

CAS Journal Grade:1

Cited Count:

WoS CC Cited Count:

SCOPUS Cited Count: 107

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 1

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