56
3 Metal Cluster Reacting with Oxygen
33. J. Hagen, L.D. Socaciu, M. Elijazyfer, U. Heiz, T.M. Bernhardt, L. Woste, Phys. Chem. Chem.
Phys. 4, 1707–1709 (2002)
34. B. Yoon, H. Häkkinen, U. Landman, J. Phys. Chem. A 107, 4066–4071 (2003)
35. E. Florez, W. Tiznado, F. Mondragón, P. Fuentealba, J. Phys. Chem. A 109, 7815–7821 (2005)
36. V.A. Spasov, T.H. Lee, K.M. Ervin, J. Chem. Phys. 112, 1713–1720 (2000)
37. B.C. Guo, K.P. Kerns, A.W. Castleman Jr., J. Phys. Chem. 96, 6931–6937 (1992)
38. D.P. Stevenson, Discuss. Faraday Soc. 10, 35–45 (1951)
39. B.C. Guo, K.P. Kerns, A.W. Castleman Jr., J. Phys. Chem. 96, 4879–4883 (1992)
40. P.D. Dao, K.I. Peterson, A.W. Castleman Jr., J. Chem. Phys. 80, 563–564 (1984)
41. G.L. Gutsev, B.K. Rao, P. Jena, J. Phys. Chem. A 104, 11961–11971 (2000)
42. S. Klacar, A. Hellman, I. Panas, H. Grönbeck, J. Phys. Chem. C 114, 12610–12617 (2010)
43. R. Pal, L.-M. Wang, Y. Pei, L.-S. Wang, X.C. Zeng, J. Am. Chem. Soc. 134, 9438–9445 (2012)
44. M. Hayyan, M.A. Hashim, I.M. AlNashef, Chem. Rev. 116, 3029–3085 (2016)
45. M.-Y. Jia, Z. Luo, S.-G. He, M.-F. Ge, J. Phys. Chem. A 118, 8163–8169 (2014)
46. M.F. Jarrold, J.E. Bower, Chem. Phys. Lett. 144, 311–316 (1988)
47. R.L. Hettich, J. Am. Chem. Soc. 111, 8582–8588 (1989)
48. S.E. Deutsch, J.T. Miller, K. Tomishige, Y. Iwasawa, W.A. Weber, B.C. Gates, J. Phys. Chem.
100, 13408–13415 (1996)
49. C. Ashman, S.N. Khanna, M.R. Pederson, Chem. Phys. Lett. 324, 137–142 (2000)
50. M. Bienati, V. Bonacic-Koutecky, P. Fantucci, J. Phys. Chem. A 104, 6983–6992 (2000)
51. A. Pramann, Y. Nakamura, A. Nakajima, K. Kaya, J. Phys. Chem. A 105, 7534–7540 (2001)
52. A.W. Castleman Jr., Abstr. Pap. Am. Chem. Soc. 226, U284–U285 (2003)
53. J. Hagen, L.D. Socaciu, J. Le Roux, D. Popolan, T.M. Bernhardt, L. Wöste, R. Mitri´ c, H. Noack,
V. Bonaˇ ci´ c-Koutecký, J. Am. Chem. Soc. 126, 3442–3443 (2004)
54. A.W. Castleman Jr., M.L. Kimble, N.A. Moore, Abstr. Pap. Am. Chem. Soc. 230, U2845–
U2845 (2005)
55. W. Wang, R. Clark, A. Nakano, R.K. Kalia, P. Vashishta, Appl. Phys. Lett. 95, 261901 (2009)
56. L.-H. Tian, Y.-X. Zhao, X.-N. Wu, X.-L. Ding, S.-G. He, T.-M. Ma, ChemPhysChem 13,
1282–1288 (2012)
57. O. Gehret, M.P. Irion, Chem. Eur. J. 2, 598–603 (1996)
58. E.R. Fisher, J.L. Elkind, D.E. Clemmer, R. Georgiadis, S.K. Loh, N. Aristov, L.S. Sunderlin,
P.B. Armentrout, J. Chem. Phys. 93, 2676–2691 (1990)
59. D. Stolcic, M. Fischer, G. Ganteför, Y.D. Kim, Q. Sun, P. Jena, J. Am. Chem. Soc. 125,
2848–2849 (2003)
60. Y.D. Kim, M. Fischer, G. Ganteför, Chem. Phys. Lett. 377, 170–176 (2003)
61. L.D. Socaciu, J. Hagen, J. Le Roux, D. Popolan, T.M. Bernhardt, L. Woste, S. Vajda, J. Chem.
Phys. 120, 2078–2081 (2004)
62. Z. Luo, A.W. Castleman Jr., S.N. Khanna, Chem. Rev. 116, 14456–14492 (2016)
63. Z. Luo, A.C. Reber, M. Jia, W.H. Blades, S.N. Khanna, A.W. Castleman, Chem. Sci. 7, 3067–
3074 (2016)
64. F.A. Cotton, G. Wilkinson, in Advanced Inorganic Chemistry, 4th edn. (Wiley, New York,
1980), p. 709.
65. R.C. Bell, K.A. Zemski, K.P. Kerns, H.T. Deng, A.W. Castleman Jr., J. Phys. Chem. A 102,
1733–1742 (1998)
66. M. Foltin, G.J. Stueber, E.R. Bernstein, J. Chem. Phys. 111, 9577–9586 (1999)
67. R.C. Bell, K.A. Zemski, D.R. Justes, A.W. Castleman Jr., J. Chem. Phys. 114, 798–811 (2001)
68. Y. Matsuda, E.R. Bernstein, J. Phys. Chem. A 109, 3803–3811 (2005)
69. H. Zhang, H. Wu, Y. Jia, L. Geng, Z. Luo, H. Fu, J. Yao, Rev. Sci. Instrum. 90, 073101 (2019)
70. H. Zhang, H. Wu, L. Geng, Y. Jia, M. Yang, Z. Luo, Phys. Chem. Chem. Phys. 21, 11234–11241
(2019)
71. J. Xu, M.T. Rodgers, J.B. Griffin, P.B. Armentrout, J. Chem. Phys. 108, 9339–9350 (1998)
72. M. Engeser, T. Weiske, D. Schroder, H. Schwarz, J. Phys. Chem. A 107, 2855–2859 (2003)
73. X. Wu, A.K. Ray, J. Chem. Phys. 110, 2437–2445 (1999)
74. P. Jena, Q. Sun, Chem. Rev. (Washington, DC, USA), 118, 5755–5870 (2018)
3 Metal Cluster Reacting with Oxygen
33. J. Hagen, L.D. Socaciu, M. Elijazyfer, U. Heiz, T.M. Bernhardt, L. Woste, Phys. Chem. Chem.
Phys. 4, 1707–1709 (2002)
34. B. Yoon, H. Häkkinen, U. Landman, J. Phys. Chem. A 107, 4066–4071 (2003)
35. E. Florez, W. Tiznado, F. Mondragón, P. Fuentealba, J. Phys. Chem. A 109, 7815–7821 (2005)
36. V.A. Spasov, T.H. Lee, K.M. Ervin, J. Chem. Phys. 112, 1713–1720 (2000)
37. B.C. Guo, K.P. Kerns, A.W. Castleman Jr., J. Phys. Chem. 96, 6931–6937 (1992)
38. D.P. Stevenson, Discuss. Faraday Soc. 10, 35–45 (1951)
39. B.C. Guo, K.P. Kerns, A.W. Castleman Jr., J. Phys. Chem. 96, 4879–4883 (1992)
40. P.D. Dao, K.I. Peterson, A.W. Castleman Jr., J. Chem. Phys. 80, 563–564 (1984)
41. G.L. Gutsev, B.K. Rao, P. Jena, J. Phys. Chem. A 104, 11961–11971 (2000)
42. S. Klacar, A. Hellman, I. Panas, H. Grönbeck, J. Phys. Chem. C 114, 12610–12617 (2010)
43. R. Pal, L.-M. Wang, Y. Pei, L.-S. Wang, X.C. Zeng, J. Am. Chem. Soc. 134, 9438–9445 (2012)
44. M. Hayyan, M.A. Hashim, I.M. AlNashef, Chem. Rev. 116, 3029–3085 (2016)
45. M.-Y. Jia, Z. Luo, S.-G. He, M.-F. Ge, J. Phys. Chem. A 118, 8163–8169 (2014)
46. M.F. Jarrold, J.E. Bower, Chem. Phys. Lett. 144, 311–316 (1988)
47. R.L. Hettich, J. Am. Chem. Soc. 111, 8582–8588 (1989)
48. S.E. Deutsch, J.T. Miller, K. Tomishige, Y. Iwasawa, W.A. Weber, B.C. Gates, J. Phys. Chem.
100, 13408–13415 (1996)
49. C. Ashman, S.N. Khanna, M.R. Pederson, Chem. Phys. Lett. 324, 137–142 (2000)
50. M. Bienati, V. Bonacic-Koutecky, P. Fantucci, J. Phys. Chem. A 104, 6983–6992 (2000)
51. A. Pramann, Y. Nakamura, A. Nakajima, K. Kaya, J. Phys. Chem. A 105, 7534–7540 (2001)
52. A.W. Castleman Jr., Abstr. Pap. Am. Chem. Soc. 226, U284–U285 (2003)
53. J. Hagen, L.D. Socaciu, J. Le Roux, D. Popolan, T.M. Bernhardt, L. Wöste, R. Mitri´ c, H. Noack,
V. Bonaˇ ci´ c-Koutecký, J. Am. Chem. Soc. 126, 3442–3443 (2004)
54. A.W. Castleman Jr., M.L. Kimble, N.A. Moore, Abstr. Pap. Am. Chem. Soc. 230, U2845–
U2845 (2005)
55. W. Wang, R. Clark, A. Nakano, R.K. Kalia, P. Vashishta, Appl. Phys. Lett. 95, 261901 (2009)
56. L.-H. Tian, Y.-X. Zhao, X.-N. Wu, X.-L. Ding, S.-G. He, T.-M. Ma, ChemPhysChem 13,
1282–1288 (2012)
57. O. Gehret, M.P. Irion, Chem. Eur. J. 2, 598–603 (1996)
58. E.R. Fisher, J.L. Elkind, D.E. Clemmer, R. Georgiadis, S.K. Loh, N. Aristov, L.S. Sunderlin,
P.B. Armentrout, J. Chem. Phys. 93, 2676–2691 (1990)
59. D. Stolcic, M. Fischer, G. Ganteför, Y.D. Kim, Q. Sun, P. Jena, J. Am. Chem. Soc. 125,
2848–2849 (2003)
60. Y.D. Kim, M. Fischer, G. Ganteför, Chem. Phys. Lett. 377, 170–176 (2003)
61. L.D. Socaciu, J. Hagen, J. Le Roux, D. Popolan, T.M. Bernhardt, L. Woste, S. Vajda, J. Chem.
Phys. 120, 2078–2081 (2004)
62. Z. Luo, A.W. Castleman Jr., S.N. Khanna, Chem. Rev. 116, 14456–14492 (2016)
63. Z. Luo, A.C. Reber, M. Jia, W.H. Blades, S.N. Khanna, A.W. Castleman, Chem. Sci. 7, 3067–
3074 (2016)
64. F.A. Cotton, G. Wilkinson, in Advanced Inorganic Chemistry, 4th edn. (Wiley, New York,
1980), p. 709.
65. R.C. Bell, K.A. Zemski, K.P. Kerns, H.T. Deng, A.W. Castleman Jr., J. Phys. Chem. A 102,
1733–1742 (1998)
66. M. Foltin, G.J. Stueber, E.R. Bernstein, J. Chem. Phys. 111, 9577–9586 (1999)
67. R.C. Bell, K.A. Zemski, D.R. Justes, A.W. Castleman Jr., J. Chem. Phys. 114, 798–811 (2001)
68. Y. Matsuda, E.R. Bernstein, J. Phys. Chem. A 109, 3803–3811 (2005)
69. H. Zhang, H. Wu, Y. Jia, L. Geng, Z. Luo, H. Fu, J. Yao, Rev. Sci. Instrum. 90, 073101 (2019)
70. H. Zhang, H. Wu, L. Geng, Y. Jia, M. Yang, Z. Luo, Phys. Chem. Chem. Phys. 21, 11234–11241
(2019)
71. J. Xu, M.T. Rodgers, J.B. Griffin, P.B. Armentrout, J. Chem. Phys. 108, 9339–9350 (1998)
72. M. Engeser, T. Weiske, D. Schroder, H. Schwarz, J. Phys. Chem. A 107, 2855–2859 (2003)
73. X. Wu, A.K. Ray, J. Chem. Phys. 110, 2437–2445 (1999)
74. P. Jena, Q. Sun, Chem. Rev. (Washington, DC, USA), 118, 5755–5870 (2018)
