Citation: | Yi Wang, Zichen Xu, Xianhong Wu, Zhong-Shuai Wu. Recent advances and key perspectives of in-situ studies for oxygen evolution reaction in water electrolysis. Green Energy&Environment, 2024, 9(10): 1497-1517. doi: 10.1016/j.gee.2023.11.003 |
[1] |
Q. Yu, Z. Zhang, S. Qiu, Y. Luo, Z. Liu, F. Yang, H. Liu, S. Ge, X. Zou, B. Ding, W. Ren, H.M. Cheng, C. Sun, B. Liu, Nat. Commun. 12 (2021) 6051.
|
[2] |
T. Zhang, J.C. Bui, Z. Li, A.T. Bell, A.Z. Weber, J. Wu, Nat. Catal. 5 (2022) 202-211.
|
[3] |
J. Guo, Y. Zheng, Z. Hu, C. Zheng, J. Mao, K. Du, M. Jaroniec, S.-Z. Qiao, T. Ling, Nat. Energy 8 (2023) 264-272.
|
[4] |
J. Su, Y. Yang, G. Xia, J. Chen, P. Jiang, Q. Chen, Nat. Commun. 8 (2017) 14969.
|
[5] |
B.C.C. Chong Liu, Marika Ziesack, Pamela A. Silver, Daniel G. Nocera, Science 352 (2016) 6290.
|
[6] |
Z.W. Seh, J. Kibsgaard, C.F. Dickens, I. Chorkendorff, J.K. Norskov, T.F. Jaramillo, Science 355 (2017) eaad4998.
|
[7] |
H.M.-F. Daniel Clark, Michael Budd, Irene Yuste-Tirados, Dustin Beeaff, Simen Aamodt, Kevin Nguyen, Luca Ansaloni, Thijs Peters, Per K. Vestre, Dimitrios K. Pappas, Maria I. Valls, Sonia Remiro-Buenamanana, Truls Norby, Tor S. Bjoerheim, Jose M. Serra, Christian Kjoelseth, Science 376 (2022) 390-393.
|
[8] |
A. Hauch, R. Kungas, P. Blennow, A.B. Hansen, J.B. Hansen, B.V. Mathiesen, M.B. Mogensen, Science 370 (2020) eaba6118.
|
[9] |
J. Song, C. Wei, Z.F. Huang, C. Liu, L. Zeng, X. Wang, Z.J. Xu, Chem. Soc. Rev. 49 (2020) 2196-2214.
|
[10] |
D. Guan, H. Xu, Q. Zhang, Y.C. Huang, C. Shi, Y.C. Chang, X. Xu, J. Tang, Y. Gu, C.W. Pao, S.C. Haw, J.M. Chen, Z. Hu, M. Ni, Z. Shao, Adv. Mater. (2023) 2305074.
|
[11] |
H. Sun, X. Xu, H. Kim, W. Jung, W. Zhou, Z. Shao, Energy Environ. Mater. 6 (2023) e12441.
|
[12] |
L. Yang, L. Shi, H. Chen, X. Liang, B. Tian, K. Zhang, Y. Zou, X. Zou, Adv. Mater. 35 (2023) e2208539.
|
[13] |
P. Zhai, M. Xia, Y. Wu, G. Zhang, J. Gao, B. Zhang, S. Cao, Y. Zhang, Z. Li, Z. Fan, C. Wang, X. Zhang, J.T. Miller, L. Sun, J. Hou, Nat. Commun. 12 (2021) 4587.
|
[14] |
Z. Zheng, L. Yu, M. Gao, X. Chen, W. Zhou, C. Ma, L. Wu, J. Zhu, X. Meng, J. Hu, Y. Tu, S. Wu, J. Mao, Z. Tian, D. Deng, Nat. Commun. 11 (2020) 3315.
|
[15] |
M. Carmo, D.L. Fritz, J. Mergel, D. Stolten, Int. J. Hydrogen Energy 38 (2013) 4901-4934.
|
[16] |
J. Tang, X. Xu, T. Tang, Y. Zhong, Z. Shao, Small Methods 6 (2022) 2201099.
|
[17] |
R. Li, H. Wang, F. Hu, K.C. Chan, X. Liu, Z. Lu, J. Wang, Z. Li, L. Zeng, Y. Li, X. Wu, Y. Xiong, Nat. Commun. 12 (2021) 3540.
|
[18] |
Y. Zhu, J. Wang, T. Koketsu, M. Kroschel, J.M. Chen, S.Y. Hsu, G. Henkelman, Z. Hu, P. Strasser, J. Ma, Nat. Commun. 13 (2022) 7754.
|
[19] |
S. Hao, H. Sheng, M. Liu, J. Huang, G. Zheng, F. Zhang, X. Liu, Z. Su, J. Hu, Y. Qian, L. Zhou, Y. He, B. Song, L. Lei, X. Zhang, S. Jin, Nat. Nanotechnol. 16 (2021) 1371-1377.
|
[20] |
C. Liu, J. Qian, Y. Ye, H. Zhou, C.-J. Sun, C. Sheehan, Z. Zhang, G. Wan, Y.-S. Liu, J. Guo, S. Li, H. Shin, S. Hwang, T.B. Gunnoe, W.A. Goddard, S. Zhang, Nat. Catal. 4 (2020) 36-45.
|
[21] |
I.C. Man, H.Y. Su, F. Calle-Vallejo, H.A. Hansen, J.I. Martinez, N.G. Inoglu, J. Kitchin, T.F. Jaramillo, J.K. Noerskov, J. Rossmeisl, ChemCatChem 3 (2011) 1159-1165.
|
[22] |
W. Kang, R. Wei, H. Yin, D. Li, Z. Chen, Q. Huang, P. Zhang, H. Jing, X. Wang, C. Li, J. Am. Chem. Soc. 145 (2023) 3470-3477.
|
[23] |
F.-Y. Chen, Z.-Y. Wu, Z. Adler, H. Wang, Joule 5 (2021) 1704-1731.
|
[24] |
S. Trasatti, J. Electroanal. Chem. 111 (1980) 125-131.
|
[25] |
J.O.M.B.a.T. Otagawa, J. Electrochem. Soc. 131 (1984) 290.
|
[26] |
K.J.M. Jin Suntivich, Hubert A. Gasteiger, John B. Goodenough, Yang Shao-Horn, Science 334 (2011) 9.
|
[27] |
D.Y. Chung, P.P. Lopes, P. Farinazzo Bergamo Dias Martins, H. He, T. Kawaguchi, P. Zapol, H. You, D. Tripkovic, D. Strmcnik, Y. Zhu, S. Seifert, S. Lee, V.R. Stamenkovic, N.M. Markovic, Nat. Energy 5 (2020) 222-230.
|
[28] |
Q. Wang, C.Q. Xu, W. Liu, S.F. Hung, H. Bin Yang, J. Gao, W. Cai, H.M. Chen, J. Li, B. Liu, Nat. Commun. 11 (2020) 4246.
|
[29] |
Z.Y. Wu, F.Y. Chen, B. Li, S.W. Yu, Y.Z. Finfrock, D.M. Meira, Q.Q. Yan, P. Zhu, M.X. Chen, T.W. Song, Z. Yin, H.W. Liang, S. Zhang, G. Wang, H. Wang, Nat. Mater. 22 (2022) 100-108.
|
[30] |
A. Bergmann, T.E. Jones, E. Martinez Moreno, D. Teschner, P. Chernev, M. Gliech, T. Reier, H. Dau, P. Strasser, Nat. Catal. 1 (2018) 711-719.
|
[31] |
Y. Yao, S. Hu, W. Chen, Z.-Q. Huang, W. Wei, T. Yao, R. Liu, K. Zang, X. Wang, G. Wu, W. Yuan, T. Yuan, B. Zhu, W. Liu, Z. Li, D. He, Z. Xue, Y. Wang, X. Zheng, J. Dong, C.-R. Chang, Y. Chen, X. Hong, J. Luo, S. Wei, W.-X. Li, P. Strasser, Y. Wu, Y. Li, Nat. Catal. 2 (2019) 304-313.
|
[32] |
A. Li, S. Kong, C. Guo, H. Ooka, K. Adachi, D. Hashizume, Q. Jiang, H. Han, J. Xiao, R. Nakamura, Nat. Catal. 5 (2022) 109-118.
|
[33] |
A.D.a.B. Jovanovic, J. Electrochem. Soc. 123 (1976) 374.
|
[34] |
J.O.M.B.a.T. Otagawa, J. Phys. Chem. 87 (1983) 2960-2971.
|
[35] |
J.H. M. Wohlfahrt-Mehrens, J. Electroanal. Chem. 237 (1987) 251-260.
|
[36] |
T. Binninger, R. Mohamed, K. Waltar, E. Fabbri, P. Levecque, R. Kotz, T.J. Schmidt, Sci. Rep. 5 (2015) 12167.
|
[37] |
X. Rong, J. Parolin, A.M. Kolpak, ACS Catal. 6 (2016) 1153-1158.
|
[38] |
Y. Pan, X. Xu, Y. Zhong, L. Ge, Y. Chen, J.M. Veder, D. Guan, R. O'hayre, M. Li, G. Wang, H. Wang, W. Zhou, Z. Shao, Nat. Commun. 11 (2020) 2002.
|
[39] |
Z.-F. Huang, J. Song, Y. Du, S. Xi, S. Dou, J.M.V. Nsanzimana, C. Wang, Z.J. Xu, X. Wang, Nat. Energy 4 (2019) 329-338.
|
[40] |
D. Guan, G. Ryu, Z. Hu, J. Zhou, C.L. Dong, Y.C. Huang, K. Zhang, Y. Zhong, A.C. Komarek, M. Zhu, X. Wu, C.W. Pao, C.K. Chang, H.J. Lin, C.T. Chen, W. Zhou, Z. Shao, Nat. Commun. 11 (2020) 3376.
|
[41] |
K. Xiao, Y. Wang, P. Wu, L. Hou, Z.Q. Liu, Angew. Chem. Int. Ed. Engl. (2023) e202301408.
|
[42] |
X. Xu, Y. Pan, Y. Zhong, C. Shi, D. Guan, L. Ge, Z. Hu, Y.Y. Chin, H.J. Lin, C.T. Chen, H. Wang, S.P. Jiang, Z. Shao, Adv. Sci. 9 (2022).
|
[43] |
X. Xu, Y. Pan, L. Ge, Y. Chen, X. Mao, D. Guan, M. Li, Y. Zhong, Z. Hu, V.K. Peterson, M. Saunders, C.T. Chen, H. Zhang, R. Ran, A. Du, H. Wang, S.P. Jiang, W. Zhou, Z. Shao, Small 17 (2021) 2101573.
|
[44] |
J. Wu, T. Yang, R. Fu, M. Zhou, L. Xia, Z. Wang, Y. Zhao, Adv. Funct. Mater. 33 (2023) 2300808.
|
[45] |
W. Liu, X. Wang, F. Wang, X. Liu, Y. Zhang, W. Li, Y. Guo, H. Yin, D. Wang, Chem. Eng. J. 454 (2023) 140030.
|
[46] |
S. Liu, R. Wan, Z. Lin, Z. Liu, Y. Liu, Y. Tian, D.-D. Qin, Z. Tang, J. Mater. Chem. A 10 (2022) 5244-5254.
|
[47] |
Z. He, J. Zhang, Z. Gong, H. Lei, D. Zhou, N. Zhang, W. Mai, S. Zhao, Y. Chen, Nat Commun 13 (2022) 2191.
|
[48] |
D.N. Mueller, M.L. Machala, H. Bluhm, W.C. Chueh, Nat Commun 6 (2015) 6097.
|
[49] |
F. Wang, P. Zou, Y. Zhang, W. Pan, Y. Li, L. Liang, C. Chen, H. Liu, S. Zheng, Nat. Commun. 14 (2023) 6019.
|
[50] |
Y. Wen, P. Chen, L. Wang, S. Li, Z. Wang, J. Abed, X. Mao, Y. Min, C.T. Dinh, P. Luna, R. Huang, L. Zhang, L. Wang, L. Wang, R.J. Nielsen, H. Li, T. Zhuang, C. Ke, O. Voznyy, Y. Hu, Y. Li, W.A. Goddard, Iii, B. Zhang, H. Peng, E.H. Sargent, J. Am. Chem. Soc. 143 (2021) 6482-6490.
|
[51] |
C. Wang, P. Zhai, M. Xia, W. Liu, J. Gao, L. Sun, J. Hou, Adv. Mater. 35 (2022).
|
[52] |
Y. Wang, R. Yang, Y. Ding, B. Zhang, H. Li, B. Bai, M. Li, Y. Cui, J. Xiao, Z.S. Wu, Nat. Commun. 14 (2023) 1412.
|
[53] |
A. Grimaud, W.T. Hong, Y. Shao-Horn, J.M. Tarascon, Nat. Mater. 15 (2016) 121-126.
|
[54] |
C. Lin, J.-L. Li, X. Li, S. Yang, W. Luo, Y. Zhang, S.-H. Kim, D.-H. Kim, S.S. Shinde, Y.-F. Li, Z.-P. Liu, Z. Jiang, J.-H. Lee, Nat. Catal. 4 (2021) 1012-1023.
|
[55] |
J.O.M. Bockris, J. Chem. Phys. 24 (1956) 817-827.
|
[56] |
K.S. Vittal K. Yachandra, And Melvin P. Klein, Chem. Rev. 96 (1996) 2927-2950.
|
[57] |
J.J.C. Feng Liu, Jonah W. Jurss, Thomas Cardolaccia, Joseph L. Templeton, and Thomas J. Meyer, Inorg. Chem. 47 (2008) 6.
|
[58] |
S.R. Fernando Bozoglian, Mehmed Z. Ertem, Tanya K. Todorova, Cristina Sens, Joaquim Mola, Montserrat Rodriguez, Isabel Romero, Jordi Benet-Buchholz, Xavier Fontrodona, Christopher J. Cramer, Laura Gagliardi, and Antoni Llobet, J. Am. Chem. Soc. 131 (2009) 15176-15187.
|
[59] |
C.W.C. Robert, A. Binstead, Jinfeng Ni, Chris M. Hartshorn, and Thomas J. Meyer, J. Am. Chem. Soc. 122 (2000) 8464-8473.
|
[60] |
F.B. Sophie Romain, Xavier Sala, and Antoni Llobet, J. Am. Chem. Soc. 131 (2009) 2768-2769.
|
[61] |
L.-P. Wang, T. Van Voorhis, J. Phys. Chem. Lett. 2 (2011) 2200-2204.
|
[62] |
M. Okamura, M. Kondo, R. Kuga, Y. Kurashige, T. Yanai, S. Hayami, V.K. Praneeth, M. Yoshida, K. Yoneda, S. Kawata, S. Masaoka, Nature 530 (2016) 465-468.
|
[63] |
D. Zhang, M. Li, X. Yong, H. Song, G.I.N. Waterhouse, Y. Yi, B. Xue, D. Zhang, B. Liu, S. Lu, Nat. Commun. 14 (2023) 2517.
|
[64] |
N. Wang, P. Ou, R.K. Miao, Y. Chang, Z. Wang, S.F. Hung, J. Abed, A. Ozden, H.Y. Chen, H.L. Wu, J.E. Huang, D. Zhou, W. Ni, L. Fan, Y. Yan, T. Peng, D. Sinton, Y. Liu, H. Liang, E.H. Sargent, J. Am. Chem. Soc. 145 (2023) 7829-7836.
|
[65] |
S.X. Xiaopeng Wang, Pengru Huang, Yonghua Du, Haoyin Zhong, Qing Wang, Armando Borgna, Yong-Wei Zhang, Zhenbo Wang, Hao Wang, Zhi Gen Yu, Wee Siang Vincent Lee and Junmin Xue, Nature 611 (2022) 702-708.
|
[66] |
L. Li, J. Zhou, X. Wang, J. Gracia, M. Valvidares, J. Ke, M. Fang, C. Shen, J.M. Chen, Y.C. Chang, C.W. Pao, S.Y. Hsu, J.F. Lee, A. Ruotolo, Y. Chin, Z. Hu, X. Huang, Q. Shao, Adv. Mater. 35 (2023).
|
[67] |
Y. Zhu, J. Wang, H. Chu, Y.-C. Chu, H.M. Chen, ACS Energy Lett. 5 (2020) 1281-1291.
|
[68] |
X. Li, S. Wang, L. Li, Y. Sun, Y. Xie, J. Am. Chem. Soc. 142 (2020) 9567-9581.
|
[69] |
X. Wang, H. Zhong, S. Xi, W.S.V. Lee, J. Xue, Adv. Mater. (2022) e2107956.
|
[70] |
X. Zheng, B. Zhang, P. De Luna, Y. Liang, R. Comin, O. Voznyy, L. Han, F.P. Garcia De Arquer, M. Liu, C.T. Dinh, T. Regier, J.J. Dynes, S. He, H.L. Xin, H. Peng, D. Prendergast, X. Du, E.H. Sargent, Nat. Chem. 10 (2018) 149-154.
|
[71] |
E. Fabbri, M. Nachtegaal, T. Binninger, X. Cheng, B.J. Kim, J. Durst, F. Bozza, T. Graule, R. Schaublin, L. Wiles, M. Pertoso, N. Danilovic, K.E. Ayers, T.J. Schmidt, Nat. Mater. 16 (2017) 925-931.
|
[72] |
W. Zheng, M. Liu, L.Y.S. Lee, ACS Catal. 10 (2019) 81-92.
|
[73] |
Y. Yuan, Q. Wang, Y. Qiao, X. Chen, Z. Yang, W. Lai, T. Chen, G. Zhang, H. Duan, M. Liu, H. Huang, Adv. Energy Mater. 12 (2022) 2200970.
|
[74] |
X. Liu, L. Yin, D. Ren, L. Wang, Y. Ren, W. Xu, S. Lapidus, H. Wang, X. He, Z. Chen, G.L. Xu, M. Ouyang, K. Amine, Nat. Commun. 12 (2021) 4235.
|
[75] |
S. Heidari, S.E. Balaghi, A.S. Sologubenko, G.R. Patzke, ACS Catal. 11 (2021) 2511-2523.
|
[76] |
Y. Liu, Y. Ying, L. Fei, Y. Liu, Q. Hu, G. Zhang, S.Y. Pang, W. Lu, C.L. Mak, X. Luo, L. Zhou, M. Wei, H. Huang, J. Am. Chem. Soc. 141 (2019) 8136-8145.
|
[77] |
H.Y. Wang, S.F. Hung, H.Y. Chen, T.S. Chan, H.M. Chen, B. Liu, J. Am. Chem. Soc. 138 (2016) 36-39.
|
[78] |
F. Dionigi, J. Zhu, Z. Zeng, T. Merzdorf, H. Sarodnik, M. Gliech, L. Pan, W.X. Li, J. Greeley, P. Strasser, Angew. Chem. Int. Ed. 60 (2021) 14446-14457.
|
[79] |
S.H. Ahn, D. Jin, C. Lee, Y. Lee, J. Mater. Chem. A 11 (2023) 14941-14951.
|
[80] |
M. Gelfi, E. Bontempi, R. Roberti, L. Armelao, L.E. Depero, Thin Solid Films 450 (2004) 143-147.
|
[81] |
Z. Yan, H. Sun, X. Chen, H. Liu, Y. Zhao, H. Li, W. Xie, F. Cheng, J. Chen, Nat. Commun. 9 (2018) 2373.
|
[82] |
Y. Qin, T. Yu, S. Deng, X.Y. Zhou, D. Lin, Q. Zhang, Z. Jin, D. Zhang, Y.B. He, H.J. Qiu, L. He, F. Kang, K. Li, T.Y. Zhang, Nat. Commun. 13 (2022) 3784.
|
[83] |
J.W.T. A. Ryabov, D. Nabben, M. V. Tsarev, P. Baum, Sci. Adv. 6 (2020) eabb1393.
|
[84] |
T. Susi, C. Hofer, G. Argentero, G.T. Leuthner, T.J. Pennycook, C. Mangler, J.C. Meyer, J. Kotakoski, Nat. Commun. 7 (2016) 13040.
|
[85] |
G. Zhu, M.L. Sushko, J.S. Loring, B.A. Legg, M. Song, J.A. Soltis, X. Huang, K.M. Rosso, J.J. De Yoreo, Nature 590 (2021) 416-422.
|
[86] |
Y. Hu, Y. Zheng, J. Jin, Y. Wang, Y. Peng, J. Yin, W. Shen, Y. Hou, L. Zhu, L. An, M. Lu, P. Xi, C.-H. Yan, Nat. Commun. 14 (2023) 1949.
|
[87] |
N. Hodnik, G. Dehm, K.J. Mayrhofer, Acc. Chem. Res. 49 (2016) 2015-2022.
|
[88] |
T.H. Shen, L. Spillane, J. Peng, Y. Shao-Horn, V. Tileli, Nat Catal 5 (2022) 30-36.
|
[89] |
Y. Cheng, L. Zhang, Q. Zhang, J. Li, Y. Tang, C. Delmas, T. Zhu, M. Winter, M.-S. Wang, J. Huang, Mater. Today 42 (2021) 137-161.
|
[90] |
G. Binnig, H. Rohrer, C. Gerber, E. Weibel, Phys. Rev. Lett. 49 (1982) 57-61.
|
[91] |
G.A. C. Longo, F. Sanz, and P. T. A. Sumodjo, J. Electrochem. Soc. 146 (1999) 2169-2174.
|
[92] |
J. Fester, A. Makoveev, D. Grumelli, R. Gutzler, Z. Sun, J. Rodriguez-Fernandez, K. Kern, J.V. Lauritsen, Angew. Chem. Int. Ed. 57 (2018) 11893-11897.
|
[93] |
K.I.a.E. Tomita, Surf. Sci. 201 (1988) L507-L512.
|
[94] |
G. Binnig, C.F. Quate, C. Gerber, Phys. Rev. Lett. 56 (1986) 930-933.
|
[95] |
S. Manne, J. Vac. Sci. Technol. B 9 (1991) 950.
|
[96] |
H.W.C. Postma, A. Sellmeijer, C. Dekker, Adv. Mater. 12 (2000) 1299-1302.
|
[97] |
J.K.N. Jingjing Liu, Robert W. Carpick, and Kevin T. Turner, ACS Nano 4 (2010) 3763-3772.
|
[98] |
F.-R.F.F. Allen, J. Bard, Juhyoun Kwak, and Ovadia Lev, Anal. Chem. 61 (1989) 132-138.
|
[99] |
H.S. Ahn, A.J. Bard, J. Am. Chem. Soc. 138 (2016) 313-318.
|
[100] |
Z. Jin, P. Li, Y. Meng, Z. Fang, D. Xiao, G. Yu, Nat. Catal. 4 (2021) 615-622.
|
[101] |
J.Y. Chen, L. Dang, H. Liang, W. Bi, J.B. Gerken, S. Jin, E.E. Alp, S.S. Stahl, J. Am. Chem. Soc. 137 (2015) 15090-15093.
|
[102] |
K.C. Leonard, A.J. Bard, J. Am. Chem. Soc. 135 (2013) 15890-15896.
|
[103] |
B.L.a.a.J. Bard, J. Phys. Chem. B 106 (2002) 12801-12806.
|
[104] |
X. Shi, W. Qing, T. Marhaba, W. Zhang, Electrochim. Acta 332 (2020) 135472.
|
[105] |
H. Konno, in Materials Science and Engineering of Carbon, 2016, pp. 153-171.
|
[106] |
A.J. Urquhart, M.R. Alexander, in A.R. Boccaccini, J.E. Gough (Eds.), Tissue Engineering Using Ceramics and Polymers, Woodhead Publishing, Erlangen,.
|
[107] |
J. Maibach, I. Kallquist, M. Andersson, S. Urpelainen, K. Edstrom, H. Rensmo, H. Siegbahn, M. Hahlin, Nat. Commun. 10 (2019) 3080.
|
[108] |
S. Hou, X. Ma, Y. Shu, J. Bao, Q. Zhang, M. Chen, P. Zhang, S. Dai, Nat. Commun. 12 (2021) 5917.
|
[109] |
Y. Liu, J. Zhang, Y. Li, Q. Qian, Z. Li, Y. Zhu, G. Zhang, Nat. Commun. 11 (2020) 1853.
|
[110] |
R. Arrigo, M. Havecker, M.E. Schuster, C. Ranjan, E. Stotz, A. Knop-Gericke, R. Schlogl, Angew. Chem. Int. Ed. Engl. 52 (2013) 11660-11664.
|
[111] |
Z. Chen, Y. Xu, D. Ding, G. Song, X. Gan, H. Li, W. Wei, J. Chen, Z. Li, Z. Gong, X. Dong, C. Zhu, N. Yang, J. Ma, R. Gao, D. Luo, S. Cong, L. Wang, Z. Zhao, Y. Cui, Nat. Commun. 13 (2022) 763.
|
[112] |
M. Favaro, J. Yang, S. Nappini, E. Magnano, F.M. Toma, E.J. Crumlin, J. Yano, I.D. Sharp, J. Am. Chem. Soc. 139 (2017) 8960-8970.
|
[113] |
M.K. Pooria Sedigh Rahimabadi, Kaveenga R. Koswattage, X-Ray Spectrom. 49 (2020) 348-373.
|
[114] |
J. Timoshenko, B. Roldan Cuenya, Chem. Rev. 121 (2021) 882-961.
|
[115] |
C.H. Van Oversteeg, H.Q. Doan, F.M. De Groot, T. Cuk, Chem. Soc. Rev. 46 (2017) 102-125.
|
[116] |
Y. Deng, B.S. Yeo, ACS Catal. 7 (2017) 7873-7889.
|
[117] |
K.S. Joya, X. Sala, Phys. Chem. Chem. Phys. 17 (2015) 21094-21103.
|
[118] |
E. Miele, W.M. Dose, I. Manyakin, M.H. Frosz, Z. Ruff, M.F.L. De Volder, C.P. Grey, J.J. Baumberg, T.G. Euser, Nat. Commun. 13 (2022) 1651.
|
[119] |
X. Wang, S.-C. Huang, S. Hu, S. Yan, B. Ren, Nat. Rev. Phys. 2 (2020) 253-271.
|
[120] |
F. Fan, Z. Feng, K. Sun, M. Guo, Q. Guo, Y. Song, W. Li, C. Li, Angew. Chem. Int. Ed. 48 (2009) 8743-8747.
|
[121] |
A.I. Perez-Jimenez, D. Lyu, Z. Lu, G. Liu, B. Ren, Chem. Sci. 11 (2020) 4563-4577.
|
[122] |
H. Zhang, C. Wang, H.-L. Sun, G. Fu, S. Chen, Y.-J. Zhang, B.-H. Chen, J.R. Anema, Z.-L. Yang, J.-F. Li, Z.-Q. Tian, Nat. Commun. 8 (2017) 15447.
|
[123] |
C. Hess, Chem. Soc. Rev. 50 (2021) 3519-3564.
|
[124] |
J. Su, H. Zhou, S. Liu, C. Wang, W. Jiao, Y. Wang, C. Liu, Y. Ye, L. Zhang, Y. Zhao, H. Liu, D. Wang, W. Yang, Z. Xie, M. He, Nat. Commun. 10 (2019) 1297.
|
[125] |
B. Bai, C. Guo, F. Jiao, J. Xiao, Y. Ding, S. Qu, Y. Pan, X. Pan, X. Bao, Angew. Chem. Int. Ed. 62 (2023) e202217701.
|
[126] |
C.M. Muller, B. Pejcic, L. Esteban, C.D. Piane, M. Raven, B. Mizaikoff, Sci. Rep. 4 (2014) 6764.
|
[127] |
R. Mendelsohn, G. Mao, C.R. Flach, Biochimica et Biophysica Acta (BBA) - Biomembranes 1798 (2010) 788-800.
|
[128] |
W. Cheng, H. Su, Q. Liu, Acc. Chem. Res. 55 (2022) 1949-1959.
|
[129] |
Z. Tan, M. Haneda, H. Kitagawa, B. Huang, Angew. Chem. Int. Ed. 61 (2022) e202202588.
|
[130] |
Z.-Z. Wu, X.-L. Zhang, Z.-Z. Niu, F.-Y. Gao, P.-P. Yang, L.-P. Chi, L. Shi, W.-S. Wei, R. Liu, Z. Chen, S. Hu, X. Zheng, M.-R. Gao, J. Am. Chem. Soc. 144 (2021) 259-269.
|
[131] |
X. He, J.M. Larson, H.A. Bechtel, R. Kostecki, Nat. Commun. 13 (2022) 1398.
|
[132] |
C. Gervillie-Mouravieff, C. Boussard-Pledel, J. Huang, C. Leau, L.A. Blanquer, M.B. Yahia, M.L. Doublet, S.T. Boles, X.H. Zhang, J.L. Adam, J.M. Tarascon, Nat. Energy 7 (2022) 1157-1169.
|
[133] |
L. Cao, Q. Luo, J. Chen, L. Wang, Y. Lin, H. Wang, X. Liu, X. Shen, W. Zhang, W. Liu, Z. Qi, Z. Jiang, J. Yang, T. Yao, Nat. Commun. 10 (2019) 4849.
|
[134] |
W. Ma, S. Xie, T. Liu, Q. Fan, J. Ye, F. Sun, Z. Jiang, Q. Zhang, J. Cheng, Y. Wang, Nat. Catal. 3 (2020) 478-487.
|
[135] |
P. Gutlich, Z. Anorg. Allg. Chem. 638 (2012) 15-43.
|
[136] |
G.-F. Han, F. Li, A.I. Rykov, Y.-K. Im, S.-Y. Yu, J.-P. Jeon, S.-J. Kim, W. Zhou, R. Ge, Z. Ao, T.J. Shin, J. Wang, H.Y. Jeong, J.-B. Baek, Nat. Nanotechnol. 17 (2022) 403-407.
|
[137] |
X. Xu, X. Zhang, Z. Kuang, Z. Xia, A.I. Rykov, S. Yu, J. Wang, S. Wang, G. Sun, Appl. Catal., B 309 (2022) 121290.
|
[138] |
Z. Kuang, S. Liu, X. Li, M. Wang, X. Ren, J. Ding, R. Ge, W. Zhou, A.I. Rykov, M.T. Sougrati, P.-E. Lippens, Y. Huang, J. Wang, J. Energy Chem. 57 (2021) 212-218.
|
[139] |
Z. Wang, M.T. Sougrati, Y. He, P.N. Le Pham, W. Xu, A. Iadecola, R. Ge, W. Zhou, Q. Zheng, X. Li, J. Wang, Nano Energy 109 (2023) 108256.
|
[140] |
C.-S.C. Xuning Li, Sung-Fu Hung, Ying-Rui Lu, Weizheng Cai, Alexandre I. Rykov, Shu Miao, Shibo Xi, Hongbin Yang, Zehua Hu, Junhu Wang, Jiyong Zhao, Esen Ercan Alp, Wei Xu, Ting-Shan Chan, Haoming Chen, Qihua Xiong, Hai Xiao, Yanqiang Huang, Jun Li, Tao Zhang and Bin Liu, Chem 6 (2020) 3440-3454.
|
[141] |
Q.-X.X. Jafar Hussain Shah, Zhi-Chong Kuang, Ri-Le Ge, Wen-Hui Zhou, Duo-Rong Liu, Alexandre I. Rykov, Xu-Ning Li, Jing-Shan Luo, Jun-Hu Wang, J. Electrochem. 28 (2022) 2108541.
|
[142] |
X. Li, K. Zhu, J. Pang, M. Tian, J. Liu, A.I. Rykov, M. Zheng, X. Wang, X. Zhu, Y. Huang, B. Liu, J. Wang, W. Yang, T. Zhang, Appl. Catal., B 224 (2018) 518-532.
|
[143] |
S. Tamara, M.A. Den Boer, A.J.R. Heck, Chem. Rev. 122 (2021) 7269-7326.
|
[144] |
P.L. Urban, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 374 (2016) 20150382.
|
[145] |
H. Ren, M. Kovalev, Z. Weng, M.Z. Muhamad, H. Ma, Y. Sheng, L. Sun, J. Wang, S. Rihm, W. Yang, A.A. Lapkin, J.W. Ager, Nat. Catal. 5 (2022) 1169-1179.
|
[146] |
Y.J. Linfeng Fan, Genxiang Wang, Junxiang Chen, Kai Chen, Xi Liu, and Zhenhai Wen, J. Am. Chem. Soc. 144 (2022) 7224-7235.
|
[147] |
Y.-R. Zheng, J. Vernieres, Z. Wang, K. Zhang, D. Hochfilzer, K. Krempl, T.-W. Liao, F. Presel, T. Altantzis, J. Fatermans, S.B. Scott, N.M. Secher, C. Moon, P. Liu, S. Bals, S. Van Aert, A. Cao, M. Anand, J.K. Noerskov, J. Kibsgaard, I. Chorkendorff, Nat. Energy 7 (2021) 55-64.
|
[148] |
H. Baltruschat, J. Am. Soc. Mass Spectrom. 15 (2004) 1693-1706.
|
[149] |
K. Ye, G. Zhang, X.-Y. Ma, C. Deng, X. Huang, C. Yuan, G. Meng, W.-B. Cai, K. Jiang, Energy Environ. Sci. 15 (2022) 749-759.
|
[150] |
K. Macounova, M. Makarova, P. Krtil, Electrochem. Commun. 11 (2009) 1865-1868.
|
[151] |
J. Bai, J. Mei, T. Liao, Q. Sun, Z.G. Chen, Z. Sun, Adv. Energy Mater. 12 (2021) 2103247.
|
[152] |
S. Wang, Q. Jiang, S. Ju, C.-S. Hsu, H.M. Chen, D. Zhang, F. Song, Nat. Commun. 13 (2022) 6650.
|
[153] |
C.W. Tung, Y.Y. Hsu, Y.P. Shen, Y. Zheng, T.S. Chan, H.S. Sheu, Y.C. Cheng, H.M. Chen, Nat. Commun. 6 (2015) 8106.
|
[154] |
F. Reikowski, F. Maroun, I. Pacheco, T. Wiegmann, P. Allongue, J. Stettner, O.M. Magnussen, ACS Catal. 9 (2019) 3811-3821.
|
[155] |
G. Wan, J.W. Freeland, J. Kloppenburg, G. Petretto, J.N. Nelson, D.Y. Kuo, C.J. Sun, J.G. Wen, J.T. Diulus, G.S. Herman, Y.Q. Dong, R.H. Kou, J.Y. Sun, S. Chen, K.M. Shen, D.G. Schlom, G.M. Rignanese, G. Hautier, D.D. Fong, Z.X. Feng, H. Zhou, J. Suntivich, Sci. Adv. 7 (2021) eabc7323.
|
[156] |
K. Fan, H. Zou, Y. Lu, H. Chen, F. Li, J. Liu, L. Sun, L. Tong, M.F. Toney, M. Sui, J. Yu, ACS Nano 12 (2018) 12369-12379.
|
[157] |
J. Deng, M.R. Nellist, M.B. Stevens, C. Dette, Y. Wang, S.W. Boettcher, Nano Lett. 17 (2017) 6922-6926.
|
[158] |
J.T. Mefford, A.R. Akbashev, M. Kang, C.L. Bentley, W.E. Gent, H.D. Deng, D.H. Alsem, Y.S. Yu, N.J. Salmon, D.A. Shapiro, P.R. Unwin, W.C. Chueh, Nature 593 (2021) 67-73.
|
[159] |
J.M. Barforoush, D.T. Jantz, T.E. Seuferling, K.R. Song, L.C. Cummings, K.C. Leonard, J. Mater. Chem. A 5 (2017) 11661-11670.
|
[160] |
M. Favaro, C. Valero-Vidal, J. Eichhorn, F.M. Toma, P.N. Ross, J. Yano, Z. Liu, E.J. Crumlin, J. Mater. Chem. A 5 (2017) 11634-11643.
|
[161] |
J.J. Velasco-Velez, E.A. Carbonio, C.H. Chuang, C.J. Hsu, J.F. Lee, R. Arrigo, M. Havecker, R. Wang, M. Plodinec, F.R. Wang, A. Centeno, A. Zurutuza, L.J. Falling, R.V. Mom, S. Hofmann, R. Schlogl, A. Knop-Gericke, T.E. Jones, J. Am. Chem. Soc. 143 (2021) 12524-12534.
|
[162] |
S.F. Hung, Y.T. Chan, C.C. Chang, M.K. Tsai, Y.F. Liao, N. Hiraoka, C.S. Hsu, H.M. Chen, J. Am. Chem. Soc. 140 (2018) 17263-17270.
|
[163] |
J. Zhou, Y. Wang, X. Su, S. Gu, R. Liu, Y. Huang, S. Yan, J. Li, S. Zhang, Energy Environ. Sci. 12 (2019) 739-746.
|
[164] |
Z. Xiao, Y.C. Huang, C.L. Dong, C. Xie, Z. Liu, S. Du, W. Chen, D. Yan, L. Tao, Z. Shu, G. Zhang, H. Duan, Y. Wang, Y. Zou, R. Chen, S. Wang, J. Am. Chem. Soc. 142 (2020) 12087-12095.
|
[165] |
L. Cao, Q. Luo, J. Chen, L. Wang, Y. Lin, H. Wang, X. Liu, X. Shen, W. Zhang, W. Liu, Z. Qi, Z. Jiang, J. Yang, T. Yao, Nat. Commun. 10 (2019) 4849.
|
[166] |
C. Hu, Y. Hu, C. Fan, L. Yang, Y. Zhang, H. Li, W. Xie, Angew. Chem. Int. Ed. Engl. 60 (2021) 19774-19778.
|
[167] |
A. Moysiadou, S. Lee, C.S. Hsu, H.M. Chen, X. Hu, J. Am. Chem. Soc. 142 (2020) 11901-11914.
|
[168] |
K. Natarajan, E. Munirathinam, T.C.K. Yang, ACS. Appl. Mater. Interfaces 13 (2021) 27140-27148.
|
[169] |
R. Zhang, L. Pan, B. Guo, Z.F. Huang, Z. Chen, L. Wang, X. Zhang, Z. Guo, W. Xu, K.P. Loh, J.J. Zou, J. Am. Chem. Soc. 145 (2023) 2271-2281.
|
[170] |
S. Hao, M. Liu, J. Pan, X. Liu, X. Tan, N. Xu, Y. He, L. Lei, X. Zhang, Nat. Commun. 11 (2020) 5368.
|
[171] |
Z. Shi, Y. Wang, J. Li, X. Wang, Y. Wang, Y. Li, W. Xu, Z. Jiang, C. Liu, W. Xing, J. Ge, Joule 5 (2021) 2164-2176.
|
[172] |
J. Kim, P.C. Shih, K.C. Tsao, Y.T. Pan, X. Yin, C.J. Sun, H. Yang, J. Am. Chem. Soc. 139 (2017) 12076-12083.
|
[173] |
Y. Lin, Z. Tian, L. Zhang, J. Ma, Z. Jiang, B.J. Deibert, R. Ge, L. Chen, Nat. Commun. 10 (2019) 162.
|
[174] |
J.-W. Zhao, H. Zhang, C.-F. Li, X. Zhou, J.-Q. Wu, F. Zeng, J. Zhang, G.-R. Li, Energy Environ. Sci. 15 (2022) 3912-3922.
|
[175] |
Q.-F.C. Xianhao Zhang, Jintao Deng, Xinyu Xu, Jirui Zhan, Hao-Yi Du, Zhengyou Yu, Meixian Li, Ming-Tian Zhang, and Yuanhua Shao, J. Am. Chem. Soc. 144 (2022) 17748-17752.
|
[176] |
K.A. Stoerzinger, W.T. Hong, E.J. Crumlin, H. Bluhm, Y. Shao-Horn, Acc. Chem. Res. 48 (2015) 2976-2983.
|
[177] |
X. Zheng, B. Zhang, P. De Luna, Y. Liang, R. Comin, O. Voznyy, L. Han, F.P. Garcia De Arquer, M. Liu, C.T. Dinh, T. Regier, J.J. Dynes, S. He, H.L. Xin, H. Peng, D. Prendergast, X. Du, E.H. Sargent, Nat. Chem. 10 (2018) 149-154.
|
[178] |
W. Zheng, L.Y.S. Lee, Chemistry - An Asian Journal 17 (2022) e202200384.
|