188
11 Cluster Dissociation, Intracluster Reactivity and Effect of the Ligands
cluster, enabling a strong electrostatic attraction and orbital interactions in Al 13
+ Bz
cluster with reasonable stability [107]. Also, proper ligand accommodation could
causes anti-centrosymmetric structure of a ligand-protected metal clusters such as
[Au 13 Cu 4 (PPh 3 ) 4 (SPy) 8 ]
+ [108].
References
1. K.A. Gingerich, Faraday Symp. Chem. Soc. 14, 109–125 (1980)
2. R.C. Dunbar, T.B. McMahon, D. Tholmann, D.S. Tonner, D.R. Salahub, D.Q. Wei, J. Am.
Chem. Soc. 117, 12819–12825 (1995)
3. K. Koyama, S. Kudoh, K. Miyajima, F. Mafune, Chem. Phys. Lett. 625, 104–109 (2015)
4. V.M. Akulin, C. Brechignac, A. Sarfati, Phys. Rev. Lett. 75, 220–223 (1995)
5. K.P. Remya, T. Udayabhaskararao, T. Pradeep, J. Phys. Chem. C 116, 26019–26026 (2012)
6. T.T. Tsong, Surf. Sci. 50, 621–625 (1975)
7. M.F. Jarrold, A.J. Illies, M.T. Bowers, J. Am. Chem. Soc. 107, 7339–7344 (1985)
8. P.J. Brucat, L.S. Zheng, C.L. Pettiette, S. Yang, R.E. Smalley, J. Chem. Phys. 84, 3078–3088
(1986)
9. M.E. Geusic, T.J. McIlrath, M.F. Jarrold, L.A. Bloomfield, R.R. Freeman, W.L. Brown, J.
Chem. Phys. 84, 2421–2422 (1986)
10. R.L. Hettich, B.S. Freiser, J. Am. Chem. Soc. 109, 3537–3542 (1987)
11. S.H. Yoon, J.H. Moon, K.M. Choi, M.S. Kim, Rapid Commun. Mass Spectrom. 20, 2201–2208
(2006)
12. F. Aguirre, J. Husband, C.J. Thompson, K.L. Stringer, R.B. Metz, J. Chem. Phys. 119, 10194
(2003)
13. Y.-C. Zhao, Z.-G. Zhang, J.-Y. Yuan, H.-G. Xu, W.-J. Zheng, Chin. J. Chem. Phys. 22, 655–662
(2009)
14. R.-Z. Li, H.-G. Xu, G.-J. Cao, Y.-C. Zhao, W.-J. Zheng, Chin. J. Chem. Phys. 24, 572–579
(2011)
15. J.H. Moon, Y.S. Shin, H.J. Cha, M.S. Kim, Rapid Commun. Mass Spectrom. 21, 359–368
(2007)
16. Z.W. Fu, L.M. Russon, M.D. Morse, P.B. Armentrout, Int. J. Mass Spectrom. 204, 143–157
(2001)
17. M. McDonald, B.H. McGuyer, F. Apfelbeck, C.H. Lee, I. Majewska, R. Moszynski, T.
Zelevinsky, Nature 534, 122–126 (2016)
18. D.W. Chandler, P.L. Houston, J. Chem. Phys. 87, 1445–1447 (1987)
19. S.K. Loh, D.A. Hales, L. Lian, P.B. Armentrout, J. Chem. Phys. 90, 5466–5485 (1989)
20. S.K. Loh, L. Lian, P.B. Armentrout, J. Am. Chem. Soc. 111, 3167–3176 (1989)
21. L. Hanley, S.A. Ruatta, S.L. Anderson, J. Chem. Phys. 87, 260–268 (1987)
22. P.B. Armentrout, S.K. Loh, K. Ervin, J. Am. Chem. Soc. 106, 1161–1163 (1984)
23. X.N. Wu, J.B. Ma, B. Xu, Y.X. Zhao, X.L. Ding, S.G. He, J. Phys. Chem. A 115, 5238–5246
(2011)
24. H. Koizumi, X.-G. Zhang, P.B. Armentrout, J. Phys. Chem. A 105, 2444–2452 (2001)
25. R.B. Huang, Z.Y. Liu, H.F. Liu, L.H. Chen, Q. Zhang, C.R. Wang, L.S. Zheng, F.Y. Liu, S.Q.
Yu, X.X. Ma, Int. J. Mass Spectrom. Ion Processes 151, 55–62 (1995)
26. J. Ree, Y.H. Kim, H.K. Shin, J. Chem. Phys. 124, 074307 (2006)
27. N. Aristov, P.B. Armentrout, J. Phys. Chem. 90, 5135–5140 (1986)
28. E.M. Moustafa, I. Ritacco, E. Sicilia, N. Russo, T. Shoeib, Phys. Chem. Chem. Phys. 17,
12673–12682 (2015)
29. Z.Y. Liu, Z.C. Tang, R.B. Huang, Q. Zhang, L.S. Zheng, J. Phys. Chem. A 101, 4019–4025
(1997)
11 Cluster Dissociation, Intracluster Reactivity and Effect of the Ligands
cluster, enabling a strong electrostatic attraction and orbital interactions in Al 13
+ Bz
cluster with reasonable stability [107]. Also, proper ligand accommodation could
causes anti-centrosymmetric structure of a ligand-protected metal clusters such as
[Au 13 Cu 4 (PPh 3 ) 4 (SPy) 8 ]
+ [108].
References
1. K.A. Gingerich, Faraday Symp. Chem. Soc. 14, 109–125 (1980)
2. R.C. Dunbar, T.B. McMahon, D. Tholmann, D.S. Tonner, D.R. Salahub, D.Q. Wei, J. Am.
Chem. Soc. 117, 12819–12825 (1995)
3. K. Koyama, S. Kudoh, K. Miyajima, F. Mafune, Chem. Phys. Lett. 625, 104–109 (2015)
4. V.M. Akulin, C. Brechignac, A. Sarfati, Phys. Rev. Lett. 75, 220–223 (1995)
5. K.P. Remya, T. Udayabhaskararao, T. Pradeep, J. Phys. Chem. C 116, 26019–26026 (2012)
6. T.T. Tsong, Surf. Sci. 50, 621–625 (1975)
7. M.F. Jarrold, A.J. Illies, M.T. Bowers, J. Am. Chem. Soc. 107, 7339–7344 (1985)
8. P.J. Brucat, L.S. Zheng, C.L. Pettiette, S. Yang, R.E. Smalley, J. Chem. Phys. 84, 3078–3088
(1986)
9. M.E. Geusic, T.J. McIlrath, M.F. Jarrold, L.A. Bloomfield, R.R. Freeman, W.L. Brown, J.
Chem. Phys. 84, 2421–2422 (1986)
10. R.L. Hettich, B.S. Freiser, J. Am. Chem. Soc. 109, 3537–3542 (1987)
11. S.H. Yoon, J.H. Moon, K.M. Choi, M.S. Kim, Rapid Commun. Mass Spectrom. 20, 2201–2208
(2006)
12. F. Aguirre, J. Husband, C.J. Thompson, K.L. Stringer, R.B. Metz, J. Chem. Phys. 119, 10194
(2003)
13. Y.-C. Zhao, Z.-G. Zhang, J.-Y. Yuan, H.-G. Xu, W.-J. Zheng, Chin. J. Chem. Phys. 22, 655–662
(2009)
14. R.-Z. Li, H.-G. Xu, G.-J. Cao, Y.-C. Zhao, W.-J. Zheng, Chin. J. Chem. Phys. 24, 572–579
(2011)
15. J.H. Moon, Y.S. Shin, H.J. Cha, M.S. Kim, Rapid Commun. Mass Spectrom. 21, 359–368
(2007)
16. Z.W. Fu, L.M. Russon, M.D. Morse, P.B. Armentrout, Int. J. Mass Spectrom. 204, 143–157
(2001)
17. M. McDonald, B.H. McGuyer, F. Apfelbeck, C.H. Lee, I. Majewska, R. Moszynski, T.
Zelevinsky, Nature 534, 122–126 (2016)
18. D.W. Chandler, P.L. Houston, J. Chem. Phys. 87, 1445–1447 (1987)
19. S.K. Loh, D.A. Hales, L. Lian, P.B. Armentrout, J. Chem. Phys. 90, 5466–5485 (1989)
20. S.K. Loh, L. Lian, P.B. Armentrout, J. Am. Chem. Soc. 111, 3167–3176 (1989)
21. L. Hanley, S.A. Ruatta, S.L. Anderson, J. Chem. Phys. 87, 260–268 (1987)
22. P.B. Armentrout, S.K. Loh, K. Ervin, J. Am. Chem. Soc. 106, 1161–1163 (1984)
23. X.N. Wu, J.B. Ma, B. Xu, Y.X. Zhao, X.L. Ding, S.G. He, J. Phys. Chem. A 115, 5238–5246
(2011)
24. H. Koizumi, X.-G. Zhang, P.B. Armentrout, J. Phys. Chem. A 105, 2444–2452 (2001)
25. R.B. Huang, Z.Y. Liu, H.F. Liu, L.H. Chen, Q. Zhang, C.R. Wang, L.S. Zheng, F.Y. Liu, S.Q.
Yu, X.X. Ma, Int. J. Mass Spectrom. Ion Processes 151, 55–62 (1995)
26. J. Ree, Y.H. Kim, H.K. Shin, J. Chem. Phys. 124, 074307 (2006)
27. N. Aristov, P.B. Armentrout, J. Phys. Chem. 90, 5135–5140 (1986)
28. E.M. Moustafa, I. Ritacco, E. Sicilia, N. Russo, T. Shoeib, Phys. Chem. Chem. Phys. 17,
12673–12682 (2015)
29. Z.Y. Liu, Z.C. Tang, R.B. Huang, Q. Zhang, L.S. Zheng, J. Phys. Chem. A 101, 4019–4025
(1997)
