Citation: | Muhammad Ibrar Ahmed, David Brynn Hibbert, Chuan Zhao. Rational catalyst design and mechanistic evaluation for electrochemical nitrogen reduction at ambient conditions. Green Energy&Environment, 2023, 8(6): 1567-1595. doi: 10.1016/j.gee.2022.10.001 |
[1] |
L. Zhang, X. Ji, X. Ren, Y. Ma, X. Shi, Z. Tian, A.M. Asiri, L. Chen, B. Tang, X. Sun, Adv. Mater. 30(2018) 1800191.
|
[2] |
A. Kraytsberg, Y. Ein-Eli, Energy Fuels 28(2014) 7303-7330.
|
[3] |
A.B. Laursen, A.S. Varela, F. Dionigi, H. Fanchiu, C. Miller, O.L. Trinhammer, J. Rossmeisl, S. Dahl, J. Chem. Educ. 89(2012) 1595-1599.
|
[4] |
D.R. MacFarlane, P.V. Cherepanov, J. Choi, B.H.R. Suryanto, R.Y. Hodgetts, J.M. Bakker, F.M. Ferrero Vallana, A.N. Simonov, Joule 4(2020) 1186-1205.
|
[5] |
S.Z. Andersen, V. Coli c, S. Yang, J.A. Schwalbe, A.C. Nielander, J.M. McEnaney, K. Enemark-Rasmussen, J.G. Baker, A.R. Singh, B.A. Rohr, M.J. Statt, S.J. Blair, S. Mezzavilla, J. Kibsgaard, P.C.K. Vesborg, M. Cargnello, S.F. Bent, T.F. Jaramillo, I.E.L. Stephens, J.K. Nørskov, I. Chorkendorff, Nature 570(2019) 504-508.
|
[6] |
S. Li, S.H. Ho, T. Hua, Q. Zhou, F. Li, J. Tang, Green Energy & Environ. 6(2021) 644-659.
|
[7] |
G. Qing, R. Ghazfar, S.T. Jackowski, F. Habibzadeh, M.M. Ashtiani, C.-P. Chen, M.R. Smith, T.W. Hamann, Chem. Rev. 120(2020) 5437-5516.
|
[8] |
D.F. Harris, D.A. Lukoyanov, S. Shaw, P. Compton, M. TokminaLukaszewska, B. Bothner, N. Kelleher, D.R. Dean, B.M. Hoffman, L.C. Seefeldt, Biochemistry 57(2018) 701-710.
|
[9] |
S.L. Foster, S.I.P. Bakovic, R.D. Duda, S. Maheshwari, R.D. Milton, S.D. Minteer, M.J. Janik, J.N. Renner, L.F. Greenlee, Nat. Catal. 1(2018) 490-500.
|
[10] |
L.M. Azofra, C. Sun, L. Cavallo, D.R. MacFarlane, Eur. J. Chem. 23(2017) 8275-8279.
|
[11] |
S. Ghavam, M. Vahdati, I.A.G. Wilson, P. Styring, Front. Energy Res. 9(2021) 580808.
|
[12] |
J. Lim, C.A. Fern andez, S.W. Lee, M.C. Hatzell, ACS Energy Lett. 6(2021) 3676-3685.
|
[13] |
F. Chang, W. Gao, J. Guo, P. Chen, Adv. Mater. 33(2021) 2005721.
|
[14] |
L. Li, C. Tang, H. Jin, K. Davey, S.-Z. Qiao, Chem 7(2021) 3232-3255.
|
[15] |
R. Manjunatha, A. Karaji c, M. Liu, Z. Zhai, L. Dong, W. Yan, D.P. Wilkinson, J. Zhang, Electrochem. Energy Rev. 3(2020) 506-540.
|
[16] |
X. Cui, C. Tang, Q. Zhang, Advanced Energy Materials 8(2018) 1800369.
|
[17] |
B.M. Hoffman, D. Lukoyanov, Z.-Y. Yang, D.R. Dean, L.C. Seefeldt, Chem. Rev. 114(2014) 4041-4062.
|
[18] |
Y. Ashida, K. Arashiba, K. Nakajima, Y. Nishibayashi, Nature 568(2019) 536-540.
|
[19] |
Y. Roux, C. Duboc, M. Gennari, ChemPhysChem 18(2017) 2606-2617.
|
[20] |
H. Tanaka, Y. Nishibayashi, K. Yoshizawa, Acc. Chem. Res. 49(2016) 987-995.
|
[21] |
J.S. Anderson, J. Rittle, J.C. Peters, Nature 501(2013) 84-87.
|
[22] |
K. Arashiba, Y. Miyake, Y. Nishibayashi, Nat. Chem. 3(2011) 120-125.
|
[23] |
H. Shen, M. Yang, L. Hao, J. Wang, J. Strunk, Z. Sun, Nano Res. 15(2022) 2773-2809.
|
[24] |
J. Ran, B. Xia, Y. Zhang, S.-Z. Qiao, J. Mater. Chem. A 9(2021) 18733-18745.
|
[25] |
S. Choe, S.M. Kim, Y. Lee, J. Seok, J. Jung, J.S. Lee, Y.J. Jang, Nano Convergence 8(2021) 22.
|
[26] |
S. Zhang, Y. Zhao, R. Shi, G.I.N. Waterhouse, T. Zhang, EnergyChem 1(2019) 100013.
|
[27] |
M.I. Ahmed, L.J. Arachchige, Z. Su, D.B. Hibbert, C. Sun, C. Zhao, ACS Catal 12(2022) 1443-1451.
|
[28] |
H.Y. Zhou, Y.B. Qu, J.C. Li, Z.L. Wang, C.C. Yang, Q. Jiang, App. Cat. B:Environmental 305(2022) 121023.
|
[29] |
X.-f. Zheng, J.-l. Xia, Z.-y. Nie, Y. Wang, Y. Yu, N. Ei Houda Bouroubi, J.-h. Chen, H.-c. Liu, Chem. Eng. J. 442(2022) 136350.
|
[30] |
W. Zhao, J. Qin, W. Teng, J. Mu, C. Chen, J. Ke, J.C. Huang, B. Liu, S. Wang, App. Cat. B:Environmental 305(2022) 121046.
|
[31] |
H. Liu, X. Wu, Y. Geng, X. Li, J. Xu, Green Energy Environ. (2022), https://doi.org/10.1016/j.gee.2022.09.001.
|
[32] |
S. Zhang, T. Shi, K. Li, Q. Sun, Y. Lin, L.R. Zheng, G. Wang, Y. Zhang, H. Yin, H. Zhang, J. Phys. Chem. C 126(2022) 965-973.
|
[33] |
L. Yu, Z. Mo, X. Zhu, J. Deng, F. Xu, Y. Song, Y. She, H. Li, H. Xu, Green Energy Environ 6(2021) 538-545.
|
[34] |
P. Shen, X. Li, Y. Luo, Y. Guo, X. Zhao, K. Chu, ACS Nano 5(2022) 7915-7925.
|
[35] |
H. Fei, J. Dong, Y. Feng, C.S. Allen, C. Wan, B. Volosskiy, M. Li, Z. Zhao, Y. Wang, H. Sun, P. An, W. Chen, Z. Guo, C. Lee, D. Chen, I. Shakir, M. Liu, T. Hu, Y. Li, A.I. Kirkland, X. Duan, Y. Huang, Nat. Catal. 1(2018) 63-72.
|
[36] |
L. Shi, Y. Yin, S. Wang, H. Sun, ACS Catal 10(2020) 6870-6899.
|
[37] |
Y. Wang, X. Cui, J. Zhao, G. Jia, L. Gu, Q. Zhang, L. Meng, Z. Shi, L. Zheng, C. Wang, Z. Zhang, W. Zheng, ACS Catal. 9(2019) 336-344.
|
[38] |
Z.W. Seh, J. Kibsgaard, C.F. Dickens, I. Chorkendorff, J.K. Nørskov, T.F. Jaramillo, Science 355(2017) eaad4998.
|
[39] |
Z. Wang, P. Hu, Philos. Trans. R. Soc. A:Mathematical, Physical and Engineering Sciences 374(2016) 20150078.
|
[40] |
L. Zhao, Y. Xiong, X. Wang, R. Zhao, X. Chi, Y. Zhou, H. Wang, Z. Yang, Y.M. Yan, Small 18(2022) 2106939.
|
[41] |
Y. Sun, S. Ding, B. Xia, J. Duan, M. Antonietti, S. Chen, Angew. Chem. Int. Ed. 61(2022) e202115198.
|
[42] |
S. Back, Y. Jung, Phys. Chem. Chem. Phys. 18(2016) 9161-9166.
|
[43] |
H.-L. Du, T.R. Gengenbach, R. Hodgetts, D.R. MacFarlane, A.N. Simonov, ACS Sustain. Chem. Eng. 7(2019) 6839-6850.
|
[44] |
Y. Abghoui, A.L. Garden, J.G. Howalt, T. Vegge, E. Skúlason, ACS Catal. 6(2016) 635-646.
|
[45] |
C. Ling, Y. Zhang, Q. Li, X. Bai, L. Shi, J. Wang, J. Am. Chem. Soc. 141(2019) 18264-18270.
|
[46] |
Y. Yao, S. Zhu, H. Wang, H. Li, M. Shao, J. Am. Chem. Soc. 140(2018) 1496-1501.
|
[47] |
Y. Yao, S. Zhu, H. Wang, H. Li, M. Shao, Angew. Chem. Int. Ed. 59(2020) 10479-10483.
|
[48] |
F. Lai, N. Chen, X. Ye, G. He, W. Zong, K.B. Holt, B. Pan, I.P. Parkin, T. Liu, R. Chen, Adv. Func. Mater. 30(2020) 1907376.
|
[49] |
Y. Fu, T. Li, G. Zhou, J. Guo, Y. Ao, Y. Hu, J. Shen, L. Liu, X. Wu, Nano Lett 20(2020) 4960-4967.
|
[50] |
R. Hao, W. Sun, Q. Liu, X. Liu, J. Chen, X. Lv, W. Li, Y.P. Liu, Z. Shen, Small 16(2020) e2000015.
|
[51] |
S. Cheng, C. Li, Z. Yu, Y. Sun, L. Li, J. Yang, RSC Adv 10(2020) 9814-9823.
|
[52] |
S. Liu, M. Wang, T. Qian, H. Ji, J. Liu, C. Yan, Nat. Commun. 10(2019) 3898.
|
[53] |
C. Du, Y. Gao, J. Wang, W. Chen, Chem. Commun. 55(2019) 12801-12804.
|
[54] |
X.-W. Lv, Y. Liu, Y.-S. Wang, X.-L. Liu, Z.-Y. Yuan, App. Cat. B:Environmental 280(2021) 119434.
|
[55] |
W. Xu, G. Fan, J. Chen, J. Li, L. Zhang, S. Zhu, X. Su, F. Cheng, J. Chen, Angew. Chem. Int. Ed. 59(2020) 3511-3516.
|
[56] |
X. Qu, L. Shen, Y. Mao, J. Lin, Y. Li, G. Li, Y. Zhang, Y. Jiang, S. Sun, ACS Appl. Mater. Interfaces 11(2019) 31869-31877.
|
[57] |
J. Resasco, F. Abild-Pedersen, C. Hahn, Z. Bao, M.T.M. Koper, T.F. Jaramillo, Nat. Catal. 5(2022) 374-381.
|
[58] |
Q. Zhao, Q. Cai, Y. Li, S. Wang, Y. Sun, Q. Zhou, D. Zhao, J. Phys. Chem. C 126(2022) 7859-7869.
|
[59] |
H. Yin, A. Du, ACS Appl. Mater. Interfaces 14(2022) 15235-15242.
|
[60] |
L. Xu, M. Xie, H. Yang, P. Yu, B. Ma, T. Cheng, W.A. Goddard, Top. Catal. 65(2022) 234-241.
|
[61] |
X. Wang, Q. Zhang, J. Zhou, J. Colloid Interface Sci. 610(2022) 546-556.
|
[62] |
S.Y. Lv, G. Li, L.M. Yang, J. Colloid Interface Sci. 621(2022) 24-32.
|
[63] |
E. Skúlason, T. Bligaard, S. Gudmundsd ottir, F. Studt, J. Rossmeisl, F. Abild-Pedersen, T. Vegge, H. J onsson, J.K. Nørskov, Phys. Chem. Chem. Phys. 14(2012) 1235-1245.
|
[64] |
J.H. Montoya, C. Tsai, A. Vojvodic, J.K. Nørskov, ChemSusChem 8(2015) 2180-2186.
|
[65] |
A. Bagger, H. Wan, I.E.L. Stephens, J. Rossmeisl, ACS Catal 11(2021) 6596-6601.
|
[66] |
Á.B. Höskuldsson, Y. Abghoui, A.B. Gunnarsd ottir, E. Skúlason, ACS Sustain. Chem. Eng. 5(2017) 10327-10333.
|
[67] |
Y. Cao, Y. Gao, H. Zhou, X. Chen, H. Hu, S. Deng, X. Zhong, G. Zhuang, J. Wang, Adv. Theory Simul. 1(2018) 1800018.
|
[68] |
Y. Wu, C. He, W. Zhang, J. Am. Chem. Soc. 21(2022) 9344-9353.
|
[69] |
R. Li, W. Guo, Phys. Chem. Chem. Phys. 24(2022) 13384-13398.
|
[70] |
Y. Li, D. Gao, S. Zhao, Y. Xiao, Z. Guo, Y. Fang, J. Lin, Z. Liu, Y. Huang, K. Guo, C. Tang, Chem. Eng. J. 410(2021) 128419.
|
[71] |
W. Tang, E. Sanville, G. Henkelman, J. Phys. Condens. Matter. 21(2009) 084204.
|
[72] |
H. Zhang, C. Cui, Z. Luo, J. Phys. Chem. C 124(2020) 6260-6266.
|
[73] |
L. Jasin Arachchige, Y. Xu, Z. Dai, X.L. Zhang, F. Wang, C. Sun, J. Mater. Sci. Technol. 77(2021) 244-251.
|
[74] |
Y. Lin, Y. Feng, H. Zhou, Y. Han, H. Sun, L. Shi, L. Meng, M. Zhou, Y. Liu, X. Zhang, App. Surf. Sci. 593(2022) 153338.
|
[75] |
W. Song, R. Wang, X. Liu, Y. Guo, L. Fu, C. He, J. Electrochem. Soc. 168(2021) ac3a2e.
|
[76] |
X. Cai, F. Yang, L. An, C. Fu, L. Luo, S. Shen, J. Zhang, ChemSusChem 15(2022) e202102234.
|
[77] |
D. Chen, M. Luo, S. Ning, J. Lan, W. Peng, Y.R. Lu, T.S. Chan, Y. Tan, Small 18(2022) e2104043.
|
[78] |
H. Sun, H.-Q. Yin, W. Shi, L.-L. Yang, X.-W. Guo, H. Lin, J. Zhang, T.-B. Lu, Z.-M. Zhang, Nano Res. 15(2021) 3026-3033.
|
[79] |
M. Liu, S. Yin, T. Ren, Y. Xu, Z. Wang, X. Li, L. Wang, H. Wang, ACS Appl. Mater. Interfaces 13(2021) 47458-47464.
|
[80] |
V. Kordali, G. Kyriacou, C. Lambrou, Chem. Commun. 17(2000) 1673-1674.
|
[81] |
D. Wang, L.M. Azofra, M. Harb, L. Cavallo, X. Zhang, B.H.R. Suryanto, D.R. MacFarlane, ChemSusChem 11(2018) 3416-3422.
|
[82] |
B.H.R. Suryanto, D. Wang, L.M. Azofra, M. Harb, L. Cavallo, R. Jalili, D.R.G. Mitchell, M. Chatti, D.R. MacFarlane, ACS Energy Lett. 4(2019) 430-435.
|
[83] |
Y. Sun, Q. Wu, H. Li, S. Jiang, J. Wang, W. Zhang, X. Song, B. Jia, J. Qiu, T. Ma, Carbon 195(2022) 199-206.
|
[84] |
M.-M. Shi, D. Bao, B.-R. Wulan, Y.-H. Li, Y.-F. Zhang, J.-M. Yan, Q. Jiang, Adv. Mater. 29(2017) 1606550.
|
[85] |
H. Wang, H. Yu, Z. Wang, Y. Li, Y. Xu, X. Li, H. Xue, L. Wang, Small 15(2019) 1804769.
|
[86] |
H. Wang, X. Cheng, T. Kups, S. Sun, G. Chen, D. Wang, P. Schaaf, Energy Technol 10(2022) 2200085.
|
[87] |
J. Wang, L. Yu, L. Hu, G. Chen, H. Xin, X. Feng, Nat. Commun. 9(2018) 1795.
|
[88] |
J. Lv, S. Wu, Z. Tian, Y. Ye, J. Liu, C. Liang, J. Mater. Chem. A 7(2019) 12627-12634.
|
[89] |
Q. Chen, X. Zhou, X. Zhang, W. Luo, S. Yang, Y. Ge, D. Cai, H. Nie, Z. Yang, ACS App. Mater. Interfaces 14(2022) 20988-20996.
|
[90] |
H.J. Kim, H.Y. Kim, J. Joo, S.H. Joo, J.S. Lim, J. Lee, H. Huang, M. Shao, J. Hu, J.Y. Kim, B.J. Min, S.W. Lee, M. Kang, K. Lee, S. Choi, Y. Park, Y. Wang, J. Li, Z. Zhang, J. Ma, S.-I. Choi, J. Mater. Chem. A 10(2022) 50-88.
|
[91] |
Q. Pan, L. Wang, J. Power Sources 485(2021) 229335.
|
[92] |
K. Alorku, C. Shen, Y. Li, Y. Xu, C. Wang, Q. Liu, Green Chem. 24(2022) 4201-4236.
|
[93] |
F. Zhou, L.M. Azofra, M. Ali, M. Kar, A.N. Simonov, C. McDonnellWorth, C. Sun, X. Zhang, D.R. MacFarlane, Energy Environ. Sci. 10(2017) 2516-2520.
|
[94] |
R. Zhang, L. Ji, W. Kong, H. Wang, R. Zhao, H. Chen, T. Li, B. Li, Y. Luo, X. Sun, Chem. Commun. 55(2019) 5263-5266.
|
[95] |
L. Li, C. Tang, B. Xia, H. Jin, Y. Zheng, S.-Z. Qiao, ACS Catal. 9(2019) 2902-2908.
|
[96] |
Z. Xue, C. Sun, M. Zhao, Y. Cui, Y. Qu, H. Ma, Z. Wang, Q. Jiang, ACS Appl. Mater. Interfaces 13(2021) 59834-59842.
|
[97] |
H. Liu, X. Cao, L.X. Ding, H. Wang, Adv. Func. Mater. 32(2022) 2111161.
|
[98] |
X. Li, Y. Luo, Q. Li, Y. Guo, K. Chu, J. Mater. Chem. A 9(2021) 15955-15962.
|
[99] |
L.-N. Zhang, S.-H. Li, H.-Q. Tan, S.U. Khan, Y.-Y. Ma, H.-Y. Zang, Y.-H. Wang, Y.-G. Li, ACS App. Mater. Interfaces 9(2017) 16270-16279.
|
[100] |
L. Hu, A. Khaniya, J. Wang, G. Chen, W.E. Kaden, X. Feng, ACS Catal. 8(2018) 9312-9319.
|
[101] |
Y. Zhang, W. Qiu, Y. Ma, Y. Luo, Z. Tian, G. Cui, F. Xie, L. Chen, T. Li, X. Sun, ACS Catal. 8(2018) 8540-8544.
|
[102] |
J. Han, Z. Liu, Y. Ma, G. Cui, F. Xie, F. Wang, Y. Wu, S. Gao, Y. Xu, X. Sun, Nano Energy 52(2018) 264-270.
|
[103] |
L. Huang, J. Wu, P. Han, A.M. Al-Enizi, T.M. Almutairi, L. Zhang, G. Zheng, Small Methods 3(2019) 1800386.
|
[104] |
J. Yu, C. Li, B. Li, X. Zhu, R. Zhang, L. Ji, D. Tang, A.M. Asiri, X. Sun, Q. Li, S. Liu, Y. Luo, Chem. Comm. 55(2019) 6401-6404.
|
[105] |
S. Zhang, G. Duan, L. Qiao, Y. Tang, Y. Chen, Y. Sun, P. Wan, S. Zhang, Ind. Eng. Chem. Res. 58(2019) 8935-8939.
|
[106] |
Y. Abghoui, E. Skúlasson, Procedia Comput. Sci. 51(2015) 1897-1906.
|
[107] |
Y. Abghoui, E. Skúlason, Catal. Today 286(2017) 69-77.
|
[108] |
R. Kojima, K.-i. Aika, App. Catal. A:General 218(2001) 121-128.
|
[109] |
C.D. Zeinalipour-Yazdi, J.S.J. Hargreaves, C.R.A. Catlow, J. Phys. Chem. C 120(2016) 21390-21398.
|
[110] |
X. Yang, J. Nash, J. Anibal, M. Dunwell, S. Kattel, E. Stavitski, K. Attenkofer, J.G. Chen, Y. Yan, B. Xu, J. Am. Chem. Soc. 140(2018) 13387-13391.
|
[111] |
S. Kang, J. Wang, S. Zhang, C. Zhao, G. Wang, W. Cai, H. Zhang, Electrochem. Commun. 100(2019) 90-95.
|
[112] |
L.M. Azofra, N. Li, D.R. MacFarlane, C. Sun, Energy Environ. Sci. 9(2016) 2545-2549.
|
[113] |
B. Hu, M. Hu, L. Seefeldt, T.L. Liu, ACS Energy Lett. 4(2019) 1053-1054.
|
[114] |
H. Cheng, L.-X. Ding, G.-F. Chen, L. Zhang, J. Xue, H. Wang, Adv. Mater. 30(2018) 1803694.
|
[115] |
X. Ren, J. Zhao, Q. Wei, Y. Ma, H. Guo, Q. Liu, Y. Wang, G. Cui, A.M. Asiri, B. Li, B. Tang, X. Sun, ACS Cent. Sci. 5(2019) 116-121.
|
[116] |
L. Huang, X. Gu, G. Zheng, Chem 5(2019) 15-17.
|
[117] |
M. Zhang, H. Yin, F. Jin, J. Liu, X. Ji, A. Du, W. Yang, Z. Liu, Green Energy Environ. 8(2023) 1185-1194.
|
[118] |
J. Zhao, L. Zhang, X.-Y. Xie, X. Li, Y. Ma, Q. Liu, W.-H. Fang, X. Shi, G. Cui, X. Sun, J. Mater. Chem. A 6(2018) 24031-24035.
|
[119] |
X. Qian, C. Ma, U.B. Shahid, M. Sun, X. Zhang, J. Tian, M. Shao, ACS Catal. 12(2022) 6385-6393.
|
[120] |
W. Wu, C. Niu, P. Yan, F. Shi, C. Ma, X. Yang, Y. Jia, J. Chen, M.I. Ahmed, C. Zhao, Q. Xu, App. Catal. B Environ. 298(2021) 120615.
|
[121] |
Q. Qin, F. Brandi, B. Badamdorj, M. Oschatz, M. Al-Naji, Mol. Catal. 515(2021) 111935.
|
[122] |
Y. Liu, Y. Su, X. Quan, X. Fan, S. Chen, H. Yu, H. Zhao, Y. Zhang, J. Zhao, ACS Catal. 8(2018) 1186-1191.
|
[123] |
S. Mukherjee, D.A. Cullen, S. Karakalos, K. Liu, H. Zhang, S. Zhao, H. Xu, K.L. More, G. Wang, G. Wu, Nano Energy 48(2018) 217-226.
|
[124] |
X. Yang, K. Li, D. Cheng, W.-L. Pang, J. Lv, X. Chen, H.-Y. Zang, X.-L. Wu, H.Q. Tan, Y.-H. Wang, Y.G. Li, J. Mater. Chem. A 6(2018) 7762-7769.
|
[125] |
H. Huang, L. Xia, R. Cao, Z. Niu, H. Chen, Q. Liu, T. Li, X. Shi, A.M. Asiri, X. Sun, Eur. J. Chem. 25(2019) 1914-1917.
|
[126] |
X. Yu, P. Han, Z. Wei, L. Huang, Z. Gu, S. Peng, J. Ma, G. Zheng, Joule 2(2018) 1610-1622.
|
[127] |
Y. Song, D. Johnson, R. Peng, D.K. Hensley, P.V. Bonnesen, L. Liang, J. Huang, F. Yang, F. Zhang, R. Qiao, A.P. Baddorf, T.J. Tschaplinski, N.L. Engle, M.C. Hatzell, Z. Wu, D.A. Cullen, H.M. Meyer, B.G. Sumpter, A.J. Rondinone, Sci. Adv. 4(2018) e1700336.
|
[128] |
Y.G. Guo, J.S. Hu, L.J. Wan, Adv. Mater. 20(2008) 890098.
|
[129] |
L. Wu, J.P. Hofmann, Curr. Opin. Electrochem. 34(2022) 101010.
|
[130] |
A.X. Yin, X.Q. Min, Y.W. Zhang, C.H. Yan, J. Am. Chem. Soc. 133(2011) 3816-3819.
|
[131] |
T.K. Sau, C.J. Murphy, J. Am. Chem. Soc. 126(2004) 8648-8649.
|
[132] |
T.K. Sau, A.L. Rogach, Adv. Mater. 22(2010) 1781-1804.
|
[133] |
M. Qamar, M. Abdalwadoud, M.I. Ahmed, A.M. Azad, B. Merzougui, S. Bukola, Z.H. Yamani, M.N. Siddiqui, ACS App. Mater. Interfaces 7(2015) 17954-17962.
|
[134] |
M. Nazemi, S.R. Panikkanvalappil, M.A. El-Sayed, Nano Energy 49(2018) 316-323.
|
[135] |
M. Nazemi, M.A. El-Sayed, J. Phys. Chem. Lett. 9(2018) 5160-5166.
|
[136] |
M. Nazemi, M.A. El-Sayed, J. Phys. Chem. C 123(2019) 11422-11427.
|
[137] |
W. Guo, Z. Liang, J. Zhao, B. Zhu, K. Cai, R. Zou, Q. Xu, Small Methods 2(2018) 1800204."
|
[138] |
Z. Wang, Y. Li, H. Yu, Y. Xu, H. Xue, X. Li, H. Wang, L. Wang, ChemSusChem 11(2018) 3480-3485.
|
[139] |
H.-M. Liu, S.-H. Han, Y. Zhao, Y.-Y. Zhu, X.-L. Tian, J.-H. Zeng, J.-X. Jiang, B.Y. Xia, Y. Chen, J. Mater. Chem. A 6(2018) 3211-3217.
|
[140] |
Y. Xia, Y. Xiong, B. Lim, S.E. Skrabalak, Angew. Chem. Int. Ed. 48(2009) 60-103.
|
[141] |
S. Dou, X. Wang, S. Wang, Small Methods 3(2019) 1800211.
|
[142] |
I. Matanovi c, F.H. Garzon, N.J. Henson, Phys. Chem. Chem. Phys. 16(2014) 3014-3026.
|
[143] |
D. Yang, T. Chen, Z. Wang, J. Mater. Chem. A 5(2017) 18967-18971.
|
[144] |
D. Bao, Q. Zhang, F.-L. Meng, H.-X. Zhong, M.-M. Shi, Y. Zhang, J.-M. Yan, Q. Jiang, X.-B. Zhang, Adv. Mater. 29(2017) 1604799.
|
[145] |
J. Zhao, Z. Chen, J. Am. Chem. Soc. 139(2017) 12480-12487.
|
[146] |
Q. Qin, T. Heil, M. Antonietti, M. Oschatz, Small Methods 2(2018) 1800202.
|
[147] |
H. Tao, C. Choi, L.X. Ding, Z. Jiang, Z. Han, M. Jia, Q. Fan, Y. Gao, H. Wang, A.W. Robertson, S. Hong, Y. Jung, S. Liu, Z. Sun, Chem 5(2019) 204-214.
|
[148] |
F. Lü, S. Zhao, R. Guo, J. He, X. Peng, H. Bao, J. Fu, L. Han, G. Qi, J. Luo, X. Tang, X. Liu, Nano Energy 61(2019) 420-427.
|
[149] |
M. Wang, S. Liu, T. Qian, J. Liu, J. Zhou, H. Ji, J. Xiong, J. Zhong, C. Yan, Nat. Commun. 10(2019) 341.
|
[150] |
L. Han, X. Liu, J. Chen, R. Lin, H. Liu, F. Lü, S. Bak, Z. Liang, S. Zhao, E. Stavitski, J. Luo, R.R. Adzic, H.L. Xin, Angew. Chem. Int. Ed. 58(2019) 2321-2325.
|
[151] |
S. Weon, D. Huang, K. Rigby, C. Chu, X. Wu, J.-H. Kim, ACS ES&T Eng. 1(2021) 157-172.
|
[152] |
X. Wang, A. Vasileff, Y. Jiao, Y. Zheng, S.-Z. Qiao, Adv. Mater. 31(2019) 1803625.
|
[153] |
A.S. Rad, Surf. Sci. 645(2016) 6-12.
|
[154] |
Y. Wang, K. Jia, Q. Pan, Y. Xu, Q. Liu, G. Cui, X. Guo, X. Sun, ACS Sustain. Chem. Eng. 7(2019) 117-122.
|
[155] |
X. Zhu, Z. Liu, H. Wang, R. Zhao, H. Chen, T. Wang, F. Wang, Y. Luo, Y. Wu, X. Sun, Chem. Commun. 55(2019) 3987-3990.
|
[156] |
L. Xia, X. Wu, Y. Wang, Z. Niu, Q. Liu, T. Li, X. Shi, A.M. Asiri, X. Sun, Small Methods 3(2019) 1800251.
|
[157] |
C. Zhao, S. Zhang, M. Han, X. Zhang, Y. Liu, W. Li, C. Chen, G. Wang, H. Zhang, H. Zhao, ACS Energy Lett 4(2019) 377-383.
|
[158] |
J. Chen, H. Huang, L. Xia, H. Xie, L. Ji, P. Wei, R. Zhao, H. Chen, A.M. Asiri, X. Sun, ChemistrySelect 4(2019) 3547-3550.
|
[159] |
C. Chen, D. Yan, Y. Wang, Y. Zhou, Y. Zou, Y. Li, S. Wang, Small 15(2019) 1805029.
|
[160] |
P. Song, H. Wang, L. Kang, B. Ran, H. Song, R. Wang, Chem. Commun. 55(2019) 687-690.
|
[161] |
R. Manjunatha, A. Schechter, Electrochem. Commun. 90(2018) 96-100.
|
[162] |
M.M. Shi, D. Bao, S.J. Li, B.R. Wulan, J.M. Yan, Q. Jiang, Adv. Energy Mater. 8(2018) 1800124.
|
[163] |
F. Pang, Z. Wang, K. Zhang, J. He, W. Zhang, C. Guo, Y. Ding, Nano Energy 58(2019) 834-841.
|
[164] |
H. Wang, Y. Li, D. Yang, X. Qian, Z. Wang, Y. Xu, X. Li, H. Xue, L. Wang, Nanoscale 11(2019) 5499-5505.
|
[165] |
Y. Zhang, D. Wang, S. Wang, Small 18(2022) 2104339.
|
[166] |
Y. Sun, L. Yu, S. Xu, S. Xie, L. Jiang, J. Duan, J. Zhu, S. Chen, Small 18(2022) e2106358.
|
[167] |
D. Zhang, H. Zhao, X. Wu, Y. Deng, Z. Wang, Y. Han, H. Li, Y. Shi, X. Chen, S. Li, J. Lai, B. Huang, L. Wang, Adv. Funct. Mater. 31(2021) 2006939.
|
[168] |
S. Cheng, Y.-J. Gao, Y.-L. Yan, X. Gao, S.-H. Zhang, G.-L. Zhuang, S.-W. Deng, Z.-Z. Wei, X. Zhong, J.-G. Wang, J. Energy Chem. 39(2019) 144-151.
|
[169] |
X. Cui, C. Tang, X.-M. Liu, C. Wang, W. Ma, Q. Zhang, Eur. J. Chem. 24(2018) 18494-18501.
|
[170] |
C. Lv, C. Yan, G. Chen, Y. Ding, J. Sun, Y. Zhou, G. Yu, Angew. Chem. Int. Ed. 57(2018) 6073-6076.
|
[171] |
W. Fu, P. Zhuang, M. OliverLam Chee, P. Dong, M. Ye, J. Shen, ACS Sustain. Chem. Eng. 7(2019) 9622-9628.
|
[172] |
C. Lv, Y. Qian, C. Yan, Y. Ding, Y. Liu, G. Chen, G. Yu, Angew. Chem. Int. Ed. 57(2018) 10246-10250.
|
[173] |
H.K. Lee, C.S.L. Koh, Y.H. Lee, C. Liu, I.Y. Phang, X. Han, C.-K. Tsung, X.Y. Ling, Sci. Adv. 4(2018) eaar3208.
|
[174] |
G. Zhang, Q. Ji, K. Zhang, Y. Chen, Z. Li, H. Liu, J. Li, J. Qu, Nano Energy 59(2019) 10-16.
|
[175] |
H. Xie, H. Wang, Q. Geng, Z. Xing, W. Wang, J. Chen, L. Ji, L. Chang, Z. Wang, J. Mao, Inorg. Chem. 58(2019) 5423-5427.
|
[176] |
Y. Fang, Z. Liu, J. Han, Z. Jin, Y. Han, F. Wang, Y. Niu, Y. Wu, Y. Xu, Adv. Energy Mater. 9(2019) 1803406.
|
[177] |
B. Xu, L. Xia, F. Zhou, R. Zhao, H. Chen, T. Wang, Q. Zhou, Q. Liu, G. Cui, X. Xiong, F. Gong, X. Sun, ACS Sustain. Chem. Eng. 7(2019) 2889-2893.
|
[178] |
J. Zhao, J. Yang, L. Ji, H. Wang, H. Chen, Z. Niu, Q. Liu, T. Li, G. Cui, X. Sun, Chem. Commun. 55(2019) 4266-4269.
|
[179] |
X. Li, T. Li, Y. Ma, Q. Wei, W. Qiu, H. Guo, X. Shi, P. Zhang, A.M. Asiri, L. Chen, B. Tang, X. Sun, Adv. Energy Mater. 8(2018) 1801357.
|
[180] |
L. Yang, T. Wu, R. Zhang, H. Zhou, L. Xia, X. Shi, H. Zheng, Y. Zhang, X. Sun, Nanoscale 11(2019) 1555-1562.
|
[181] |
Z. Li, Y. Zhang, S. Jiang, Adv. Mater. 20(2008) 4765-4769.
|
[182] |
X. Yan, L. Tian, M. He, X. Chen, Nano Lett. 15(2015) 6015-6021.
|
[183] |
G. Liu, Z. Cui, M. Han, S. Zhang, C. Zhao, C. Chen, G. Wang, H. Zhang, Eur. J. Chem. 25(2019) 5904-5911.
|
[184] |
Z. Xi, K. Shi, X. Xu, P. Jing, B. Liu, R. Gao, J. Zhang, Adv. Sci. 9(2022) e2104245.
|
[185] |
B.H.R. Suryanto, C.S.M. Kang, D. Wang, C. Xiao, F. Zhou, L.M. Azofra, L. Cavallo, X. Zhang, D.R. MacFarlane, ACS Energy Lett. 3(2018) 1219-1224.
|
[186] |
X. Zhu, S. Mou, Q. Peng, Q. Liu, Y. Luo, G. Chen, S. Gao, X. Sun, J. Mater. Chem. A 8(2020) 1545-1556.
|
[187] |
S. Garg, M. Li, A.Z. Weber, L. Ge, L. Li, V. Rudolph, G. Wang, T.E. Rufford, J. Mater. Chem. A 8(2020) 1511-1544.
|
[188] |
L. Gao, X. Cui, C.D. Sewell, J. Li, Z. Lin, Chem. Soc. Rev. 50(2021) 8428-8469.
|
[189] |
N. Zhang, X. Zhang, L. Tao, P. Jiang, C. Ye, R. Lin, Z. Huang, A. Li, D. Pang, H. Yan, Y. Wang, P. Xu, S. An, Q. Zhang, L. Liu, S. Du, X. Han, D. Wang, Y. Li, Angew. Chem. Int. Ed. 60(2021) 6170-6176.
|
[190] |
Y. Wang, W. Cheng, P. Yuan, G. Yang, S. Mu, J. Liang, H. Xia, K. Guo, M. Liu, S. Zhao, G. Qu, B.-A. Lu, Y. Hu, J. Hu, J.-N. Zhang, Adv. Sci. 8(2021) 2102915.
|
[191] |
S.-J. Li, D. Bao, M.-M. Shi, B.-R. Wulan, J.-M. Yan, Q. Jiang, Adv. Mater. 29(2017) 1700001.
|
[192] |
X. Wang, W. Wang, M. Qiao, G. Wu, W. Chen, T. Yuan, Q. Xu, M. Chen, Y. Zhang, X. Wang, J. Wang, J. Ge, X. Hong, Y. Li, Y. Wu, Y. Li, Sci. Bull. 63(2018) 1246-1253.
|
[193] |
X. Ren, G. Cui, L. Chen, F. Xie, Q. Wei, Z. Tian, X. Sun, Chem. Commun. 54(2018) 8474-8477.
|
[194] |
L. Zhang, X. Ji, X. Ren, Y. Luo, X. Shi, A.M. Asiri, B. Zheng, X. Sun, ACS Sustain. Chem. Eng. 6(2018) 9550-9554.
|
[195] |
S. Chen, S. Perathoner, C. Ampelli, C. Mebrahtu, D. Su, G. Centi, Angew. Chem. Int. Ed. 56(2017) 2699-2703.
|
[196] |
Q. Liu, X. Zhang, B. Zhang, Y. Luo, G. Cui, F. Xie, X. Sun, Nanoscale 10(2018) 14386-14389.
|
[197] |
X. Zhang, R.-M. Kong, H. Du, L. Xia, F. Qu, Chem. Commun. 54(2018) 5323-5325.
|
[198] |
R. Zhang, Y. Zhang, X. Ren, G. Cui, A.M. Asiri, B. Zheng, X. Sun, ACS Sustain. Chem. Eng. 6(2018) 9545-9549.
|
[199] |
Z. Wang, F. Gong, L. Zhang, R. Wang, L. Ji, Q. Liu, Y. Luo, H. Guo, Y. Li, P. Gao, X. Shi, B. Li, B. Tang, X. Sun, Adv. Sci. 6(2018) 1801182.
|
[200] |
J.-X. Yao, D. Bao, Q. Zhang, M.-M. Shi, Y. Wang, R. Gao, J.-M. Yan, Q. Jiang, Small Methods 3(2019) 1800333.
|
[201] |
J. Zhao, B. Wang, Q. Zhou, H. Wang, X. Li, H. Chen, Q. Wei, D. Wu, Y. Luo, J. You, F. Gong, X. Sun, Chem. Commun. 55(2019) 4997-5000.
|
[202] |
J. Yu, J. Li, X. Zhu, X. Zhang, K. Jia, W. Kong, P. Wei, H. Chen, X. Shi, A.M. Asiri, Q. Li, X. Sun, ChemElectroChem 6(2019) 2215-2218. 1594 M.I. Ahmed et al./Green Energy & Environment 8(2023) 1567-1595
|
[203] |
Y. Tian, D. Xu, K. Chu, Z. Wei, W. Liu, J. Mater. Sci. 54(2019) 9088-9097.
|
[204] |
H. Yu, Z. Wang, D. Yang, X. Qian, Y. Xu, X. Li, H. Wang, L. Wang, J. Mater. Chem. A 7(2019) 12526-12531.
|
[205] |
R.D. Kumar, Z. Wang, C. Li, A.V. Narendra Kumar, H. Xue, Y. Xu, X. Li, L. Wang, H. Wang, J. Mater. Chem. A 7(2019) 3190-3196.
|
[206] |
Z. Wang, C. Li, K. Deng, Y. Xu, H. Xue, X. Li, L. Wang, H. Wang, ACS Sustain. Chem. Eng. 7(2019) 2400-2405.
|
[207] |
L. Zhang, X.-Y. Xie, H. Wang, L. Ji, Y. Zhang, H. Chen, T. Li, Y. Luo, G. Cui, X. Sun, Chem. Commun. 55(2019) 4627-4630.
|
[208] |
X. Zhang, T. Wu, H. Wang, R. Zhao, H. Chen, T. Wang, P. Wei, Y. Luo, Y. Zhang, X. Sun, ACS Catal. 9(2019) 4609-4615.
|
[209] |
Y. Li, Y. Kong, Y. Hou, B. Yang, Z. Li, L. Lei, Z. Wen, ACS Sustain. Chem. Eng. 7(2019) 8853-8859.
|
[210] |
Q. Fan, C. Choi, C. Yan, Y. Liu, J. Qiu, S. Hong, Y. Jung, Z. Sun, Chem. Commun. 55(2019) 4246-4249.
|