[1] S.J. Pearton, J.C. Yang, P.H. Cary, F. Ren, J. Kim, M.J. Tadjer, M.A. Mastro, Appl. Phys. Rev. 5(2018) 011301. [2] M. Higashiwaki, K. Sasaki, A. Kuramata, T. Masui, S. Yamakoshi, Appl. Phys. Lett. 100(2012) 013504. [3] K. Yamaguchi, Solid State Commun. 131(2004) 739-744. [4] J. Zhang, P. Dong, K. Dang, Y. Zhang, Q. Yan, H. Xiang, J. Su, Z. Liu, M. Si, J. Gao, M. Kong, H. Zhou, Y. Hao, Nat. Commun. 13(2022) 3900. [5] M. Yu, C. Lv, J. Yu, Y. Shen, L. Yuan, J. Hu, S. Zhang, H. Cheng, Y. Zhang, R. Jia, Mater. Today Commun. 25(2020) 101532. [6] Y.-C. Chen, Y.-J. Lu, C.-N. Lin, Y.-Z. Tian, C.-J. Gao, L. Dong, C.-X. Shan, J. Mater. Chem. C 6 (2018) 5727-5732. [7] H. Wang, J. Ma, L. Cong, H. Zhou, P. Li, L. Fei, B. Li, H. Xu, Y. Liu, Mater. Today Phys 20 (2021) 100464. [8] D. Wu, Z. Zhao, W. Lu, L. Rogée, L. Zeng, P. Lin, Z. Shi, Y. Tian, X. Li, Y.H. Tsang, Nano Res. 14(2021) 1973-1979. [9] Y. Qu, Z. Wu, M. Ai, D. Guo, Y. An, H. Yang, L. Li, W. Tang, J. Alloy. Compd. 680(2016) 247-251. [10] Y. Zou, Y. Zeng, P. Tan, X. Zhao, X. Zhou, X. Hou, Z. Zhang, M. Ding, S. Yu, H. Huang, Q. He, X. Ma, Q.Hu G.Xu, S. Long, in: in: Proceedings to the 2022 International Electron Devices Meeting (IEDM), December 3-7, 2022 San Fran- cisco, CA, USA. [11] Q. Zhang, D. Dong, T. Zhang, T. Zhou, Y. Yang, Y. Tang, J. Shen, T. Wang, T. Bian, F. Zhang, W. Luo, Y. Zhang, Z. Wu, ACS Nano 17 (2023) 24033-24041. [12] Y. Wang, J. Su, Z. Lin, J. Zhang, J. Chang, Y. Hao, J. Mater. Chem. C 10 (2022) 13395-13436. [13] J. Xu, W. Zheng, F. Huang, J. Mater. Chem. C 7 (2019) 8753-8770. [14] D. Guo, Q. Guo, Z. Chen, Z. Wu, P. Li, W. Tang, Mater. Today Phys. 11(2019) 100157. [15] S. Geller, J. Chem. Phys. 33(1960) 676-684. [16] H. Kim, SN Appl. Sci. 4(2022) 27. [17] X.-Q. Zheng, H.Zhao, P.X.L. Feng, Appl. Phys. Lett. 120(2022) 040502. [18] J. Jiang, L. Zhang, C. Ming, H. Zhou, P. Bose, Y. Guo, Y. Hu, B. Wang, Z. Chen, R. Jia, S. Pendse, Y. Xiang, Y. Xia, Z. Lu, X. Wen, Y. Cai, C. Sun, G.C. Wang, T.M. Lu, D. Gall, Y.Y. Sun, N. Koratkar, E. Fohtung, Y. Shi, J. Shi, Nature 607 (2022) 4 80-4 85. [19] Q. Li, Z. Li, J. Meng, Int. J. Optomechatroni. 16(2022) 1-17. [20] R.W. Whatmore, Pyroelectric devices and materials, Rep.Prog. Phys. 49(1986) 1335-1386. [21] W.B. Luo, L.G. Chen, J. Meng, Y. Shuai, C.G. Wu, X.Y. Sun, W.L. Zhang, J. Mater. Sci.-Mater. Electron. 29(2017) 271-276. [22] Y. Yang, W. Guo, K.C. Pradel, G. Zhu, Y. Zhou, Y. Zhang, Y. Hu, L. Lin, Z.L. Wang, Nano Lett. 12(2012) 2833-2838. [23] Y. Zhang, J. Chen, L. Zhu, Z.L. Wang, Nano Lett. 21(2021) 8808-8816. [24] K. Zhang, Z.L. Wang, Y. Yang, ACS Nano 10 (2016) 10331-10338. [25] Z. Wang, R. Yu, C. Pan, Z. Li, J. Yang, F. Yi, Z.L. Wang, Nat. Commun. 6(2015) 8401. [26] W. Peng, R. Yu, X. Wang, Z. Wang, H. Zou, Y. He, Z.L. Wang, Nano Res. 9(2016) 3695-3704. [27] W. Peng, X. Wang, R. Yu, Y. Dai, H. Zou, A.C. Wang, Y. He, Z.L. Wang, Adv. Mater. 29(2017) 1606698. [28] H. Zou, C. Zhang, H. Xue, Z. Wu, Z.L. Wang, ACS Nano 13 (2019) 12259-12267. [29] Z. Wang, R. Yu, X. Wang, W. Wu, Z.L. Wang, Adv. Mater. 28(2016) 6880-6886. [30] L. Guo, X. Liu, L. Gao, X. Wang, L. Zhao, W. Zhang, S. Wang, C. Pan, Z. Yang, ACS Nano 16 (2022) 1280-1290. [31] Y. Dai, X. Wang, W. Peng, C. Xu, C. Wu, K. Dong, R. Liu, Z.L. Wang, Adv. Mater. 30(2018) 1705893. [32] D. You, C. Xu, W. Zhang, J. Zhao, F. Qin, Z. Shi, Nano Energy 62 (2019) 310-318. [33] L. Wang, H. Xue, M. Zhu, Y. Gao, Z. Wang, Nano Energy 97 (2022) 107163. [34] B. Fu, G. Jian, W. Mu, Y. Li, H. Wang, Z. Jia, Y. Li, S. Long, Y. Shi, X. Tao, J. Alloy. Compd. 896(2022) 162830. [35] B. Fu, W. Mu, J. Zhang, X. Wang, W. Zhuang, Y. Yin, Z. Jia. X. Tao, CrystEng-Comm 22 (2020) 5060-5066. [36] T. Onuma, S. Fujioka, T. Yamaguchi, Y. Itoh, M. Higashiwaki, K. Sasaki, T. Masui, T. Honda, J. Cryst. Growth 401 (2014) 330-333. [37] N. Suzuki, S. Ohira, M. Tanaka, T. Sugawara, K. Nakajima, T. Shishido, Phy. Sta- tus Solidi C 4 (2007) 2310-2313. [38] J.A. Spencer, A .L. Mock, A .G. Jacobs, M. Schubert, Y.H. Zhang, M.J. Tadjer, Appl. Phys. Rev. 9(2022) 2310-2313. [39] Y. Zhang, Y.C. Wang, L. Wang, L. Zhu, Z.L. Wang, Adv. Mater. 34(2022) e2204363. [40] Y. Liu, X. Gu, W. Qi, H. Zhu, H. Shan, W. Chen, P. Tao, C. Song, W. Shang, T. Deng, J. Wu, ACS Appl. Mater. Interfaces 9 (2017) 12494-12500. [41] Y. Wang, L. Zhu, Y. Feng, Z. Wang, Z.L. Wang, Adv. Funct. Mater. 29(2018) 1807111. [42] W.H. Zhu, L.X. Xiong, J.W. Si, Z.L. Hu, X. Gao, L.Y. Long, T. Li, R.Q. Wan, L. Zhang, L. C. Wang, Semicond. Sci. Technol. 35(2020) 055037. [43] T. Oshima, T. Okuno, N. Arai, N. Suzuki, H. Hino, S. Fujita, Jpn. J. Appl. Phys. 48(2009) 011605. [44] X. Chen, K. Liu, Z. Zhang, C. Wang, B. Li, H. Zhao, D. Zhao, D. Shen, ACS Appl. Mater. Interfaces 8 (2016) 4185-4191. [45] Y. Nie, S. Jiao, S. Yang, J. Jing, S. Zhang, Z. Shi, H. Lu, D. Wang, S. Gao, X. Wang, Y. Zhang, Z. Fu, A. Li, J. Wang, Mater. Today Phys. 33(2023) 101032. [46] W.Y. Kong, G.A. Wu, K.Y. Wang, T.F. Zhang, Y.F. Zou, D.D. Wang, L.B. Luo, Adv. Mater. 28(2016) 10725-10731. [47] Y. Han, Y. Wang, S. Fu, J. Ma, H. Xu, B. Li, Y. Liu, Small 19 (2023) e2206664. [48] Z. Yang, H. Wang, L. Guo, Q. Zhou, Y. Gu, F. Li, S. Qiao, C. Pan, S. Wang, Small 17 (2021) e2101572. [49] H. Zou, G. Dai, A.C. Wang, X. Li, S.L. Zhang, W. Ding, L. Zhang, Y. Zhang, Z. L. Wang, Adv. Mater. 32(2020) e1907249. [50] V. Panwar, S. Nandi, M. Majumder, A. Misra, J. Mater. Chem. C 10 (2022) 12487-12510. [51] N. Ma, Y. Yang, Nano Energy 40 (2017) 352-359. [52] R. Ahmadi, A. Abnavi, H. Ghanbari, H. Mohandes, M.R. Mohammadzadeh, T. De Silva, A. Hasani, M. Fawzy, F. Kabir, M.M. Adachi, Nano Energy 98 (2022) 107285. |