6
1 An Overview of Metal Clusters and Their Reactivity
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46. M.Z. Zhu, W.T. Eckenhoff, T. Pintauer, R.C. Jin, J. Phys. Chem. C 112, 14221–14224 (2008)
47. Z. Luo, C.J. Grover, A.C. Reber, S.N. Khanna, A.W. Castleman, J. Am. Chem. Soc. 135,
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48. Z. Luo, A.C. Reber, M. Jia, W.H. Blades, S.N. Khanna, A.W. Castleman, Chem. Sci. 7,
3067–3074 (2016)
49. X.K. Wan, Z.W. Lin, Q.M. Wang, J. Am. Chem. Soc. 134, 14750–14752 (2012)
50. C.J. Zeng, C. Liu, Y.X. Chen, N.L. Rosi, R.C. Jin, J. Am. Chem. Soc. 136, 11922–11925
(2014)
51. Y. Chen, C. Zeng, C. Liu, K. Kirschbaum, C. Gayathri, R.R. Gil, N.L. Rosi, R. Jin, J. Am.
Chem. Soc. 137, 10076–10079 (2015)
52. C.P. Joshi, M.S. Bootharaju, M.J. Alhilaly, O.M. Bakr, J. Am. Chem. Soc. 137, 11578–11581
(2015)
53. L.G. AbdulHalim, M.S. Bootharaju, Q. Tang, S. Del Gobbo, R.G. AbdulHalim, M. Eddaoudi,
D.E. Jiang, O.M. Bakr, J. Am. Chem. Soc. 137, 11970–11975 (2015)
54. A. Desireddy, B.E. Conn, J. Guo, B. Yoon, R.N. Barnett, B.M. Monahan, K. Kirschbaum,
W.P. Griffith, R.L. Whetten, U. Landman, T.P. Bigioni, Nature 501, 399–402 (2013)
55. M.J. Alhilaly, M.S. Bootharaju, C.P. Joshi, T.M. Besong, A.H. Emwas, R. Juarez-Mosqueda,
S. Kaappa, S. Malola, K. Adil, A. Shkurenko, H. Hakkinen, M. Eddaoudi, O.M. Bakr, J. Am.
Chem. Soc. 138, 14727–14732 (2016)
56. G. Frenking, N. Fröhlich, Chem. Rev. 100, 717–774 (2000)
57. N. Haruta, T. Tsukamoto, A. Kuzume, T. Kambe, K. Yamamoto, Nat. Commun. 9, 3758
(2018)
58. B. Stephanidis, S. Adichtchev, S. Etienne, S. Migot, E. Duval, A. Mermet, Phys. Rev. B 76,
121404 (2007)
59. D.-E. Jiang, M.L. Tiago, W. Luo, S. Dai, J. Am. Chem. Soc. 130, 2777–2779 (2008)
60. G. Hu, R. Jin, D.-E. Jiang, Nanoscale 8, 20103–20110 (2016)
61. D.M. Chevrier, C. Zeng, R. Jin, A. Chatt, P. Zhang, J. Phys. Chem. C 119, 1217–1223 (2014)
62. A. Tlahuice-Flores, J. Phys. Chem. C 123, 10831–10841 (2019)
63. H. Yang, J. Lei, B. Wu, Y. Wang, M. Zhou, A. Xia, L. Zheng, N. Zheng, Chem. Commun. 49,
300–302 (2013)
64. Y. Song, S. Wang, J. Zhang, X. Kang, S. Chen, P. Li, H. Sheng, M. Zhu, J. Am. Chem. Soc.
136, 2963–2965 (2014)
65. K.M. Harkness, Y. Tang, A. Dass, J. Pan, N. Kothalawala, V.J. Reddy, D.E. Cliffel, B. Demeler,
F. Stellacci, O.M. Bakr, Nanoscale 4, 4269–4274 (2012)
66. H. Yang, Y. Wang, H. Huang, L. Gell, L. Lehtovaara, S. Malola, H. Hakkinen, N. Zheng, Nat.
Commun. 4, 2422 (2013)
67. S.-F. Yuan, C.-Q. Xu, J. Li, Q.-M. Wang, Angew. Chem. Int. Ed. 58, 5906–5909 (2019)
68. Y. Jia, Z. Luo, Coord. Chem. Rev. 400, 213053 (2019)
69. A. Das, C. Liu, C.J. Zeng, G. Li, T. Li, N.L. Rosi, R.C. Jin, J. Phys. Chem. A 118, 8264–8269
(2014)
70. H.G. Boyen, G. Kastle, F. Weigl, B. Koslowski, C. Dietrich, P. Ziemann, J.P. Spatz, S.
Riethmuller, C. Hartmann, M. Moller, G. Schmid, M.G. Garnier, P. Oelhafen, Science 297,
1533–1536 (2002)
71. M. Turner, V.B. Golovko, O.P.H. Vaughan, P. Abdulkin, A. Berenguer-Murcia, M.S. Tikhov,
B.F.G. Johnson, R.M. Lambert, Nature 454, 981–983 (2008)
72. G. Schmid, Chem. Soc. Rev. 37, 1909–1930 (2008)
73. Y. Shichibu, K. Suzuki, K. Konishi, Nanoscale 4, 4125–4129 (2012)
74. T. Kambe, N. Haruta, T. Imaoka, K. Yamamoto, Nat. Commun. 8, 2046 (2017)
75. H. Zhang, A.C. Reber, L. Geng, D. Rabayda, H. Wu, Z. Luo, J. Yao, S.N. Khanna, CCS Chem.
1, 571–581 (2019)
76. H. Zhang, H. Wu, Y. Jia, L. Geng, Z. Luo, H. Fu, J. Yao, Rev. Sci. Instrum. 90, 073101 (2019)
1 An Overview of Metal Clusters and Their Reactivity
45. M. Zhu, C.M. Aikens, F.J. Hollander, G.C. Schatz, R. Jin, J. Am. Chem. Soc. 130, 5883–5885
(2008)
46. M.Z. Zhu, W.T. Eckenhoff, T. Pintauer, R.C. Jin, J. Phys. Chem. C 112, 14221–14224 (2008)
47. Z. Luo, C.J. Grover, A.C. Reber, S.N. Khanna, A.W. Castleman, J. Am. Chem. Soc. 135,
4307–4313 (2013)
48. Z. Luo, A.C. Reber, M. Jia, W.H. Blades, S.N. Khanna, A.W. Castleman, Chem. Sci. 7,
3067–3074 (2016)
49. X.K. Wan, Z.W. Lin, Q.M. Wang, J. Am. Chem. Soc. 134, 14750–14752 (2012)
50. C.J. Zeng, C. Liu, Y.X. Chen, N.L. Rosi, R.C. Jin, J. Am. Chem. Soc. 136, 11922–11925
(2014)
51. Y. Chen, C. Zeng, C. Liu, K. Kirschbaum, C. Gayathri, R.R. Gil, N.L. Rosi, R. Jin, J. Am.
Chem. Soc. 137, 10076–10079 (2015)
52. C.P. Joshi, M.S. Bootharaju, M.J. Alhilaly, O.M. Bakr, J. Am. Chem. Soc. 137, 11578–11581
(2015)
53. L.G. AbdulHalim, M.S. Bootharaju, Q. Tang, S. Del Gobbo, R.G. AbdulHalim, M. Eddaoudi,
D.E. Jiang, O.M. Bakr, J. Am. Chem. Soc. 137, 11970–11975 (2015)
54. A. Desireddy, B.E. Conn, J. Guo, B. Yoon, R.N. Barnett, B.M. Monahan, K. Kirschbaum,
W.P. Griffith, R.L. Whetten, U. Landman, T.P. Bigioni, Nature 501, 399–402 (2013)
55. M.J. Alhilaly, M.S. Bootharaju, C.P. Joshi, T.M. Besong, A.H. Emwas, R. Juarez-Mosqueda,
S. Kaappa, S. Malola, K. Adil, A. Shkurenko, H. Hakkinen, M. Eddaoudi, O.M. Bakr, J. Am.
Chem. Soc. 138, 14727–14732 (2016)
56. G. Frenking, N. Fröhlich, Chem. Rev. 100, 717–774 (2000)
57. N. Haruta, T. Tsukamoto, A. Kuzume, T. Kambe, K. Yamamoto, Nat. Commun. 9, 3758
(2018)
58. B. Stephanidis, S. Adichtchev, S. Etienne, S. Migot, E. Duval, A. Mermet, Phys. Rev. B 76,
121404 (2007)
59. D.-E. Jiang, M.L. Tiago, W. Luo, S. Dai, J. Am. Chem. Soc. 130, 2777–2779 (2008)
60. G. Hu, R. Jin, D.-E. Jiang, Nanoscale 8, 20103–20110 (2016)
61. D.M. Chevrier, C. Zeng, R. Jin, A. Chatt, P. Zhang, J. Phys. Chem. C 119, 1217–1223 (2014)
62. A. Tlahuice-Flores, J. Phys. Chem. C 123, 10831–10841 (2019)
63. H. Yang, J. Lei, B. Wu, Y. Wang, M. Zhou, A. Xia, L. Zheng, N. Zheng, Chem. Commun. 49,
300–302 (2013)
64. Y. Song, S. Wang, J. Zhang, X. Kang, S. Chen, P. Li, H. Sheng, M. Zhu, J. Am. Chem. Soc.
136, 2963–2965 (2014)
65. K.M. Harkness, Y. Tang, A. Dass, J. Pan, N. Kothalawala, V.J. Reddy, D.E. Cliffel, B. Demeler,
F. Stellacci, O.M. Bakr, Nanoscale 4, 4269–4274 (2012)
66. H. Yang, Y. Wang, H. Huang, L. Gell, L. Lehtovaara, S. Malola, H. Hakkinen, N. Zheng, Nat.
Commun. 4, 2422 (2013)
67. S.-F. Yuan, C.-Q. Xu, J. Li, Q.-M. Wang, Angew. Chem. Int. Ed. 58, 5906–5909 (2019)
68. Y. Jia, Z. Luo, Coord. Chem. Rev. 400, 213053 (2019)
69. A. Das, C. Liu, C.J. Zeng, G. Li, T. Li, N.L. Rosi, R.C. Jin, J. Phys. Chem. A 118, 8264–8269
(2014)
70. H.G. Boyen, G. Kastle, F. Weigl, B. Koslowski, C. Dietrich, P. Ziemann, J.P. Spatz, S.
Riethmuller, C. Hartmann, M. Moller, G. Schmid, M.G. Garnier, P. Oelhafen, Science 297,
1533–1536 (2002)
71. M. Turner, V.B. Golovko, O.P.H. Vaughan, P. Abdulkin, A. Berenguer-Murcia, M.S. Tikhov,
B.F.G. Johnson, R.M. Lambert, Nature 454, 981–983 (2008)
72. G. Schmid, Chem. Soc. Rev. 37, 1909–1930 (2008)
73. Y. Shichibu, K. Suzuki, K. Konishi, Nanoscale 4, 4125–4129 (2012)
74. T. Kambe, N. Haruta, T. Imaoka, K. Yamamoto, Nat. Commun. 8, 2046 (2017)
75. H. Zhang, A.C. Reber, L. Geng, D. Rabayda, H. Wu, Z. Luo, J. Yao, S.N. Khanna, CCS Chem.
1, 571–581 (2019)
76. H. Zhang, H. Wu, Y. Jia, L. Geng, Z. Luo, H. Fu, J. Yao, Rev. Sci. Instrum. 90, 073101 (2019)
