• Acta Physica Sinica
  • Vol. 69, Issue 16, 167804-1 (2020)
Yu-Ying Xi, Yue Han, Guo-Hui Li*, Ai-Ping Zhai, Ting Ji, Yu-Ying Hao, and Yan-Xia Cui*
Author Affiliations
  • College of Physics and Optoelectronics, Taiyuan University of Technology, Taiyuan 030024, China
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    DOI: 10.7498/aps.69.20200591 Cite this Article
    Yu-Ying Xi, Yue Han, Guo-Hui Li, Ai-Ping Zhai, Ting Ji, Yu-Ying Hao, Yan-Xia Cui. Application of heterostructures in halide perovskite photovoltaic devices[J]. Acta Physica Sinica, 2020, 69(16): 167804-1 Copy Citation Text show less
    References

    [1] Fang H H, Raissa R, Abdu Aguye M, Adjokatse S, Blake G R, Even J, Loi M A[J]. Adv. Funct. Mater., 25, 2378(2015).

    [2] Du M H[J]. J. Mater.Chem.A, 2, 9091(2014).

    [3] Sun J, Wu J, Tong X, Lin F, Wang Y, Wang Z M[J]. Adv. Sci. (Weinh), 5, 1700780(2018).

    [4] Ma Y, Liu Y, Shin I, Hwang I W, Jung Y K, Jeong J H, Park S H, Kim K H[J]. ACS Appl. Mater. Interfaces, 9, 33925(2017).

    [5] Liu Y, Zhang Y, Yang Z, Ye H, Feng J, Xu Z, Zhang X, Munir R, Liu J, Zuo P, Li Q, Hu M, Meng L, Wang K, Smilgies D M, Zhao G, Xu H, Yang Z, Amassian A, Li J, Zhao K, Liu S F[J]. Nat. Commun, 9, 5302(2018).

    [6] Yang Z, Deng Y, Zhang X, Wang S, Chen H, Yang S, Khurgin J, Fang N X, Zhang X, Ma R[J]. Adv. Mater., 30, 1704333(2018).

    [7] Veldhuis S A, Boix P P, Yantara N, Li M, Sum T C, Mathews N, Mhaisalkar S G[J]. Adv. Mater., 28, 6804(2016).

    [8] Yan F, Xing J, Xing G, Quan L, Tan S T, Zhao J, Su R, Zhang L, Chen S, Zhao Y, Huan A, Sargent E H, Xiong Q, Demir H V[J]. Nano Lett., 18, 3157(2018).

    [9] Wang Y, Zhang Y, Lu Y, Xu W, Mu H, Chen C, Qiao H, Song J, Li S, Sun B, Cheng Y B, Bao Q[J]. Adv. Opt. Mater., 3, 1389(2015).

    [10] Dang V Q, Han G S, Trung T Q, Duy L T, Jin Y U, Hwang B U, Jung H S, Lee N E[J]. Carbon, 105, 353(2016).

    [11] Huo C, Liu X, Wang Z, Song X, Zeng H[J]. Adv. Opt. Mater., 6, 1800152(2018).

    [12] Li Z, Moon J, Gharajeh A, Haroldson R, Hawkins R, Hu W, Zakhidov A, Gu Q[J]. ACS Nano, 12, 10968(2018).

    [13] Liu X, Yu D, Song X, Zeng H[J]. Small, 14, 1801460(2018).

    [14] Qiu L, Ono L K, Qi Y[J]. Mater. Today Energy, 7, 169(2018).

    [15] Rothenbach N, Gruner M E, Ollefs K, Schmitz Antoniak C, Salamon S, Zhou P, Li R, Mo M, Park S, Shen X, Weathersby S, Yang J, Wang X J, Pentcheva R, Wende H, Bovensiepen U, Sokolowski Tinten K, Eschenlohr A[J]. Phys. Rev. B, 100, 174301(2019).

    [16] Jing H, Ling F, Liu X, Chen Y, Zeng W, Zhang Y, Fang L, Zhou M[J]. Electron. Struct., 1, 015010(2019).

    [17] Wang H, Xu M, Zheng R K[J]. Acta Phys. Sin., 69, 017301(2020).

    [18] You P, Tang G, Yan F[J]. Mater.Today Energy, 11, 128(2019).

    [19] Wang J X, Bi Z N, Liang Z R, Xu X Q[J]. Acta Phys. Sin., 65, 058801(2016).

    [20] Luo Q, Zhang Y, Liu C, Li J, Wang N, Lin H[J]. J. Mater. Chem. A, 3, 15996(2015).

    [21] Feng S, Yang Y, Li M, Wang J, Cheng Z, Li J, Ji G, Yin G, Song F, Wang Z, Li J, Gao X[J]. ACS Appl. Mater. Interfaces, 8, 14503(2016).

    [22] Kakavelakis G, Maksudov T, Konios D, Paradisanos I, Kioseoglou G, Stratakis E, Kymakis E[J]. Adv.Energy Mater., 7, 1602120(2017).

    [23] Han G S, Song Y H, Jin Y U, Lee J W, Park N G, Kang B K, Lee J K, Cho I S, Yoon D H, Jung H S[J]. ACS Appl. Mater. Interfaces, 7, 23521(2015).

    [24] Wang J T W, Ball J M, Barea E M, Abate A, Alexander Webber J A, Huang J, Saliba M, Mora Sero I, Bisquert J, Snaith H J, Nicholas R J[J]. Nano Lett., 14, 724(2013).

    [25] Yang Z, Xie J, Arivazhagan V, Xiao K, Qiang Y, Huang K, Hu M, Cui C, Yu X, Yang D R[J]. Nano Energy, 40, 345(2017).

    [26] Gan X, Yang S, Zhang J, Wang G, He P, Sun H, Yuan H, Yu L, Ding G, Zhu Y J[J]. ACS Appl. Mater. Interfaces, 11, 37796(2019).

    [27] Xie J, Huang K, Yu X, Yang Z, Xiao K, Qiang Y, Zhu X, Xu L, Wang P, Cui C, Yang D[J]. ACS Nano, 11, 9176(2017).

    [28] Pang S, Zhang C, Zhang H, Dong H, Chen D, Zhu W, Xi H, Chang J, Lin Z, Zhang J, Hao Y[J]. Appl. Surf. Sci., 507, 145099(2020).

    [29] Wu Z, Bai S, Xiang J, Yuan Z, Yang Y, Cui W, Gao X, Liu Z, Jin Y, Sun B[J]. Nanoscale, 6, 10505(2014).

    [30] Li H, Tao L, Huang F, Sun Q, Zhao X, Han J, Shen Y, Wang M[J]. ACS Appl. Mater. Interfaces, 9, 38967(2017).

    [31] Hadadian M, Correa Baena J P, Goharshadi E K, Ummadisingu A, Seo J Y, Luo J, Gholipour S, Zakeeruddin S M, Saliba M, Abate A, Gratzel M, Hagfeldt A[J]. Adv. Mater., 28, 8681(2016).

    [32] Li X G, Zhang X, Shi Z J, Zang H J, Zhu C J, Zhan Y Q[J]. Acta Phys. Sin., 68, 158803(2019).

    [33] Tavakoli M M, Tavakoli R, Yadav P, Kong J[J]. J. Mater. Chem. A, 7, 679(2019).

    [34] Agresti A, Pescetelli S, Palma A L, , Konios D, Kakavelakis G, Razza S, Cinà L, Kymakis E, Bonaccorso F, Di Carlo A[J]. ACS Energy Letter., 2, 279(2017).

    [35] Agresti A, Pescetelli S, Taheri B, , Cinà L, Bonaccorso F, Di Carlo A[J]. ChemSusChem, 9, 2609(2016).

    [36] Wang Z, Ou Q, Zhang Y, Zhang Q, Hoh H Y, Bao Q[J]. ACS Appl. Mater. Interfaces, 10, 24258(2018).

    [37] Lee D Y, Na S I, Kim S S[J]. Nanoscale, 8, 1513(2016).

    [38] Mahmoudi T, Wang Y, Hahn Y B[J]. ACS Energy Letter., 4, 235(2018).

    [39] Fan W L, Yang Z L, Zhang Z Y, Qi J J[J]. Acta Phys. Sin., 67, 228801(2018).

    [40] Yoon J, Sung H, Lee G, Cho W, Ahn N, Jung H S, Choi M[J]. Energy Environ. Sci., 10, 337(2013).

    [41] Sung H, Ahn N, Jang M S, Lee J K, Yoon H, Park N G, Choi M[J]. Adv. Energy Mater., 6, 1501873(2016).

    [42] Guo X, Han B, Gao Y, Liu D, Chen J, Chen P, Xu L, Cui C[J]. Mater. Res. Express, 7, 016415(2020).

    [43] Chen S, Shi G[J]. Adv. Mater., 29, 1605448(2017).

    [44] Shi E, Gao Y, Finkenauer B P, Akriti , Coffey A H, Dou L[J]. Chem. Soc. Rev., 47, 6046(2018).

    [45] Li W S, Zhou J, Wang H C, Wang S X, Yu Z H, Li S L, Shi Y, Wang X R[J]. Acta Phys. Sin., 66, 218503(2017).

    [46] Capasso A, Matteocci F, Najafi L, Prato M, Buha J, Cinà L, Pellegrini V, Carlo A D, Bonaccorso F[J]. Adv. Energy Mater., 6, 1600920(2016).

    [47] Agresti A, Pescetelli S, Palma A L, Martín García B, Najafi L, Bellani S, Moreels I, Prato M, Bonaccorso F, Di Carlo A[J]. ACS Energy Letter., 4, 1862(2019).

    [48] Wang D, Elumalai N K, Mahmud M A, Yi H, Upama M B, Lee Chin R A, Conibeer G, Xu C, Haque F, Duan L, Uddin A[J]. Synth. Met., 246, 195(2018).

    [49] Choi Y, Jung S, Oh N K, Lee J, Seo J, Kim U, Koo D, Park H[J]. ChemNanoMat, 5, 1050(2019).

    [50] Dasgupta U, Chatterjee S, Pal A J[J]. Sol. Energy Mater. Sol. Cells, 172, 353(2017).

    [51] Najafi L, Taheri B, Martín García B, Bellani S, Di Girolamo D, Agresti A, Oropesa Nuñez R, Pescetelli S, Vesce L, Calabrò E, Prato M, , Di Carlo A, Bonaccorso F[J]. ACS Nano, 12, 10736(2018).

    [52] Ahmed M I, Hussain Z, Khalid A, Amin H M N, Habib A[J]. Mater. Res. Express, 3, 045022(2016).

    [53] Singh R, Giri A, Pal M, Thiyagarajan K, Kwak J, Lee J J, Jeong U, Cho K[J]. J. Mater. Chem. A, 7, 7151(2019).

    [54] Huang P, Wang Z, Liu Y, Zhang K, Yuan L, Zhou Y, Song B, Li Y[J]. ACS Appl. Mater. Interfaces, 9, 25323(2017).

    [55] Kakavelakis G, Paradisanos I, Paci B, Generosi A, Papachatzakis M, Maksudov T, Najafi L, , Kioseoglou G, Stratakis E, Bonaccorso F, Kymakis E[J]. Adv. Energy Mater., 8, 1702287(2018).

    [56] Ray R, Sarkar A S, Pal S K[J]. Sol. Energy, 193, 95(2019).

    [57] Deng Y L, Xu Z Y, Cai K, Ma F, Hou J, Peng S L[J]. Chin. Phys.B, 28, 098802(2019).

    [58] Maitani M M, Satou H, Ohmura A, Tsubaki S, Wada Y[J]. Jpn. J. Appl. Phys., 56, 08M(2017).

    [59] Jiang Q, Zhang X, You J[J]. Small, 14, 1801154(2018).

    [60] Zhu Z, Bai Y, Liu X, Chueh C C, Yang S, Jen A K Y[J]. Adv. Mater., 28, 6478(2016).

    [61] Halvani Anaraki E, Kermanpur A, Mayer M T, Steier L, Ahmed T, Turren Cruz S H, Seo J, Luo J, Zakeeruddin S M, Tress W R, Edvinsson T, Grätzel M, Hagfeldt A, Correa Baena J P[J]. ACS Energy Letter., 3, 773(2018).

    [62] Park M, Kim J Y, Son H J, Lee C H, Jang S S, Ko M J[J]. Nano Energy, 26, 208(2016).

    [63] Dong Q, Li J, Shi Y, Chen M, Ono L K, Zhou K, Zhang C, Qi Y, Zhou Y, Padture N P, Wang L Z[J]. Adv. Energy Mater., 9, 1900834(2019).

    [64] You J, Meng L, Song T B, Guo T F, Yang Y M, Chang W H, Hong Z, Chen H, Zhou H, Chen Q, Liu Y, De Marco N, Yang Y[J]. Nat. Nanotechnol., 11, 75(2016).

    [65] Li C, Han C, Zhang Y, Zang Z, Wang M, Tang X, Du J[J]. Sol. Energy Mater. Sol. Cells, 172, 341(2017).

    [66] Guo Y, Li X, Kang L L, He X, Ren Z Q, Wu J D, Qi J Y[J]. RSC Adv., 6, 62522(2016).

    [67] Zheng X, Troughton J, Gasparini N, Lin Y, Wei M, Hou Y, Liu J, Song K, Chen Z, Yang C, Turedi B, Alsalloum A Y, Pan J, Chen J, Zhumekenov A A, Anthopoulos T D, Han Y, Baran D, Mohammed O F, Sargent E H, Bakr O M[J]. Joule, 3, 1963(2019).

    [68] Liu C, Hu M, Zhou X, Wu J, Zhang L, Kong W, Li X, Zhao X, Dai S, Xu B, Cheng C[J]. NPG Asia. Mater., 10, 552(2018).

    [69] Liu C, Wang K, Du P, Wang E, Gong X, Heeger A J[J]. Nanoscale, 7, 16460(2015).

    [70] Song Z M, Zhao D X, Guo Z, Li B H, Zhang Z Z, Shen D Z[J]. Acta Phys. Sin., 61, 052901(2012).

    [71] Dharani S, Mulmudi H K, Yantara N, Thu Trang P T, Park N G, Graetzel M, Mhaisalkar S, Mathews N, Boix P P[J]. Nanoscale, 6, 1675(2014).

    [72] Yu J, Chen X, Wang Y, Zhou H, Xue M, Xu Y, Li Z, Ye C, Zhang J, van Aken P A, Lund P D, Wang H[J]. J.Mater.Chem.C, 4, 7302(2016).

    [73] Zhou H, Yang L, Gui P, Grice C R, Song Z, Wang H, Fang G[J]. Sol. Energy Mater. Sol. Cells, 193, 246(2019).

    [74] Gu Z, Chen F, Zhang X, Liu Y, Fan C, Wu G, Li H, Chen H[J]. Sol. Energy Mater. Sol. Cells, 140, 396(2015).

    [75] Gao X, Li J, Baker J, Hou Y, Guan D, Chen J, Yuan C[J]. Chem. Commun (Camb), 50, 6368(2014).

    [76] Gao X, Li J, Gollon S, Qiu M, Guan D, Guo X, Chen J, Yuan C[J]. Phys. Chem. Chem. Phys., 19, 4956(2017).

    [77] Liu Z, Zhang M, Xu X, Cai F, Yuan H, Bu L, Li W, Zhu A, Zhao Z, Wang M, Cheng Y B, He H[J]. J. Mater. Chem. A, 3, 24121(2015).

    [78] Choi D H, Nam S K, Jung K, Moon J H[J]. Nano Energy, 56, 365(2019).

    [79] He J, Wu J, Hu S, Shen H, Hu X[J]. Opt. Mater., 88, 689(2019).

    [80] Yu H K, Liu B D, Wu W L, Li Z Y[J]. Acta Phys. Sin., 68, 149101(2019).

    [81] Baek S W, Noh J, Lee C H, Kim B, Seo M K, Lee J Y[J]. Sci. Rep., 3, 1726(2013).

    [82] Carretero Palacios S, Calvo M E, Míguez H[J]. J. Phys. Chem., 119, 18635(2015).

    [83] Wu R, Yang B, Zhang C, Huang Y, Cui Y, Liu P, Zhou C, Hao Y, Gao Y, Yang J[J]. J. Phys. Chem. C, 120, 6996(2016).

    [84] Sawanta S M, Chang S S, Chang K H[J]. Nanoscale, 8, 2664(2016).

    [85] Balakrishnan S K, Kamat P V[J]. ACS Energy Lett., 2, 88(2016).

    [86] Han N, Ji T, Wang W, Li G, Li Z, Hao Y, Wu Y, Cui Y[J]. Org. Electron., 74, 190(2019).

    [87] Hsu H L, Juang T Y, Chen C P, Hsieh C M, Yang C C, Huang C L, Jeng R J[J]. Sol. Energy Mater. Sol. Cells, 140, 224(2015).

    [88] Nourolahi H, Behjat A, , Bolorizadeh M A[J]. Sol. Energy, 139, 475(2016).

    [89] Zhang X, Liu J, Kou D, Zhou W, Zhou Z, Tian Q, Meng Y, Wu S, Cao A, Ouyang C[J]. Solar RRL, 1, 1700151(2017).

    [90] Kakavelakis G, Alexaki K, Stratakis E, Kymakis E[J]. RSC Advances, 7, 12998(2017).

    [91] Zhang W, Saliba M, Stranks S D, Sun Y, Shi X, Wiesner U, Snaith H J[J]. Nano Lett., 13, 4505(2013).

    [92] Lu Z L, Pan X J, Ma Y Z, Li Y, Zheng L L, Zhang D F, Xu Q, Chen Z J, Wang S F, Qu B, Liu F, Huang Y D, Xiao L X, Qi H G[J]. RSC Adv., 5, 11175(2015).

    [93] Ye T, Ma S, Jiang X, Wei L, Vijila C, Ramakrishna S[J]. Adv. Funct. Mater., 27, 1606545(2017).

    [94] Chueh C C, Li C Z, Jen A K Y[J]. Energy. Environ. Sci., 8, 1160(2015).

    [95] Wen X R, Wu J M, Ye M D, Gao D, Lin C J[J]. Chem. Commun., 52, 11355(2016).

    [96] Yavari M, Mazloum Ardakani M, Gholipour S, Tavakoli M M, Taghavinia N, Hagfeldt A, Tress W[J]. ACS Omega, 3, 5038(2018).

    [97] Li G, Deng S, Zhang M, Chen R, Xu P, Wong M, Kwok H S[J]. Solar RRL, 2, 1800151(2018).

    [98] Zhang F, Song J, Hu R, Xiang Y, He J, Hao Y, Lian J, Zhang B, Zeng P, Qu J[J]. Small, 14, e1704007(2018).

    [99] Chaudhary B, Kulkarni A, Jena A K, Ikegami M, Udagawa Y, Kunugita H, Ema K, Miyasaka T[J]. ChemSusChem, 10, 2473(2017).

    [100] Wang Q, Dong Q, Li T, Gruverman A, Huang J[J]. Adv. Mater., 28, 6734(2016).

    [101] Xiong H, Giovanni DeLucab, Rui Y C, Zhang B X, Li Y G, Zhang Q H, Wang H Z, Elsa Reichmanis[J]. ACS Appl. Mater. Interfaces, 10, 35385(2018).

    [102] Yang J a, Qin T, Xie L, Liao K, Li T, Hao F[J]. J. Mater. Chem.C, 7, 10724(2019).

    [103] Liu X M, Li Y H, Wang X T, Zhao Y X[J]. Acta Phys. Sin., 68, 158805(2019).

    [104] Liao Y, Liu H, Zhou W, Yang D, Shang Y, Shi Z, Li B, Jiang X, Zhang L, Quan L N, Quintero Bermudez R, Sutherland B R, Mi Q, Sargent E H, Ning Z[J]. J. Am. Chem. Soc., 139, 6693(2017).

    [105] Wu Q W, Yang Z B, Peter N. Rudd, Shao Y C, Dai X Z, Wei H T, Zhao J J, Fang Y J, Wang Q, Liu Y, Deng Y H, Xiao X, Feng Y X, Huang J[J]. Sci. Adv., 5, 8925(2019).

    [106] Chen L, Xie X, Liu Z, Lee E C[J]. J. Mater. Chem. A, 5, 6974(2017).

    [107] Yao K, Wang X, Xu Y x, Li F, Zhou L[J]. Chem. Mater., 28, 3131(2016).

    [108] Cohen B E, Wierzbowska M, Etgar L[J]. Adv. Funct. Mater., 27, 1604733(2017).

    [109] Zhou L, Zhu J, Xu Y F, Shao Z P, Zhang X H, Ye J J, Huang Y, Zhang C N, Dai S Y[J]. Acta Phys. Sin., 32, 1207(2016).

    [110] Malgorzata Kot, Chittaranjan Das, Wang Z P, Karsten Henkel, Zied Rouissi, Konrad Wojciechowski, Henry J Snaith, Schmeisser D[J]. ChemSusChem, 9, 1(2016).

    [111] Si H, Liao Q, Zhang Z, Li Y, Yang X, Zhang G, Kang Z, Zhang Y[J]. Nano Energy, 22, 223(2016).

    [112] Sutherland B R, Johnston A K, Ip A H, Xu J, Adinolfi V, Kanjanaboos P, Sargent E H[J]. ACS Photonics, 2, 1117(2015).

    [113] Yu X, Chen S, Yan K, Cai X, Hu H, Peng M, Chen B, Dong B, Gao X, Zou D[J]. J. Power Sources, 325, 534(2016).

    [114] Cheng N, Liu P, Bai S, Yu Z, Liu W, Guo S S, Zhao X Z[J]. J. Power Sources, 321, 71(2016).

    [115] Ma C, Shi Y, Hu W, Chiu M H, Liu Z, Bera A, Li F, Wang H, Li L J, Wu T[J]. Adv. Mater., 28, 3683(2016).

    [116] Lee Y, Kwon J, Hwang E, Ra C H, Yoo W J, Ahn J H, Park J H, Cho J H[J]. Adv. Mater., 27, 41(2015).

    [117] Yao Z, Yang Z, Liu Y, Zhao W, Zhang X, Liu B, Wu H, Liu S[J]. Rsc Adv., 7, 38155(2017).

    [118] Chuantian Z, Liming D[J]. Angew. Chem., 129, 6628(2017).

    Yu-Ying Xi, Yue Han, Guo-Hui Li, Ai-Ping Zhai, Ting Ji, Yu-Ying Hao, Yan-Xia Cui. Application of heterostructures in halide perovskite photovoltaic devices[J]. Acta Physica Sinica, 2020, 69(16): 167804-1
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