References
213
129. D.M. Cox, R. Brickman, K. Creegan, A. Kaldor, Z. Phys, D—Atoms. Molecules and Clusters
19, 353–355 (1991)
130. Y. Zhao, K.R. Yang, Z. Wang, X. Yan, S. Cao, Y. Ye, Q. Dong, X. Zhang, J.E. Thorne, L.
Jin, K.L. Materna, A. Trimpalis, H. Bai, S.C. Fakra, X. Zhong, P. Wang, X. Pan, J. Guo, M.
Flytzani-Stephanopoulos, G.W. Brudvig, V.S. Batista, D. Wang, Proc. Natl. Acad. Sci. U. S.
A. 115, 2902–2907 (2018)
131. J. Ma, X. Cao, X. Xing, X. Wang, J.H. Parks, Phys. Chem. Chem. Phys. 18, 743–748 (2016)
132. J. Ma, X. Cao, H. Liu, B. Yin, X. Xing, Phys. Chem. Chem. Phys. 18, 12819–12827 (2016)
133. S. Muramatsu, K. Koyasu, T. Tsukuda, ACS Omega 3, 16874–16881 (2018)
134. S. Muramatsu, K. Koyasu, T. Tsukuda, J. Phys. Chem. A 120, 957–963 (2016)
135. S. Muramatsu, K. Koyasu, T. Tsukuda, Chem. Lett. 46, 676–679 (2017)
136. S. Muramatsu, T. Tsukuda, Chem. Asian J. 14, 3763–3772 (2019)
137. R.L. Whetten, D.M. Cox, D.J. Trevor, A. Kaldor, Phys. Rev. Lett. 54, 1494–1497 (1985)
138. R.L. Whetten, M.R. Zakin, D.M. Cox, D.J. Trevor, A. Kaldor, J. Chem. Phys. 85, 1697–1698
(1986)
139. K.J. Taylor, C.L. Pettiette-Hall, O. Cheshnovsky, R.E. Smalley, J. Chem. Phys. 96, 3319–3329
(1992)
140. H. Handschuh, C.-Y. Cha, P.S. Bechthold, G. Ganteför, W. Eberhardt, J. Chem. Phys. 102,
6406 (1995)
141. S. Bulusu, X. Li, L.-S. Wang, X.C. Zeng, Proc. Natl. Acad. Sci. U. S. A. 103, 8326–8330
(2006)
142. W. Huang, S. Bulusu, R. Pal, X.C. Zeng, L.S. Wang, ACS Nano 3, 1225–1230 (2009)
143. S. Bulusu, X. Li, L.-S. Wang, X.C. Zeng, J. Phys. Chem. C 111, 4190–4198 (2007)
144. J. Li, X. Li, H.-J. Zhai, L.-S. Wang, Science 299, 864–867 (2003)
145. W. Huang, M. Ji, C.-D. Dong, X. Gu, L.-M. Wang, X.G. Gong, L.-S. Wang, ACS Nano 2,
897–904 (2008)
146. N. Shao, W. Huang, Y. Gao, L.-M. Wang, X. Li, L.-S. Wang, X.C. Zeng, J. Am. Chem. Soc.
132, 6596–6605 (2010)
147. N. Shao, W. Huang, W.-N. Mei, L.S. Wang, Q. Wu, X.C. Zeng, J. Phys. Chem. C 118,
6887–6892 (2014)
148. S. Pande, W. Huang, N. Shao, L.M. Wang, N. Khetrapal, W.N. Mei, T. Jian, L.S. Wang, X.
C. Zeng, ACS Nano (2016)
149. B. Yoon, P. Koskinen, B. Huber, O. Kostko, B. von Issendorff, H. Häkkinen, M. Moseler, U.
Landman, ChemPhysChem 8, 157–161 (2007)
150. H. Häkkinen, B. Yoon, U. Landman, X. Li, H.-J. Zhai, L.-S. Wang, J. Phys. Chem. A 107,
6168–6175 (2003)
151. B. Yin, Q. Du, L. Geng, H. Zhang, Z. Luo, S. Zhou, J. Zhao, J. Phys. Chem. Lett. 11, 5807–5814
(2020)
152. B. Yin, T. Wang, Y. Chen, J. Yang, G. Wang, X. Xing, Int. J. Mass Spectrom. 451, 116312
(2020)
213
129. D.M. Cox, R. Brickman, K. Creegan, A. Kaldor, Z. Phys, D—Atoms. Molecules and Clusters
19, 353–355 (1991)
130. Y. Zhao, K.R. Yang, Z. Wang, X. Yan, S. Cao, Y. Ye, Q. Dong, X. Zhang, J.E. Thorne, L.
Jin, K.L. Materna, A. Trimpalis, H. Bai, S.C. Fakra, X. Zhong, P. Wang, X. Pan, J. Guo, M.
Flytzani-Stephanopoulos, G.W. Brudvig, V.S. Batista, D. Wang, Proc. Natl. Acad. Sci. U. S.
A. 115, 2902–2907 (2018)
131. J. Ma, X. Cao, X. Xing, X. Wang, J.H. Parks, Phys. Chem. Chem. Phys. 18, 743–748 (2016)
132. J. Ma, X. Cao, H. Liu, B. Yin, X. Xing, Phys. Chem. Chem. Phys. 18, 12819–12827 (2016)
133. S. Muramatsu, K. Koyasu, T. Tsukuda, ACS Omega 3, 16874–16881 (2018)
134. S. Muramatsu, K. Koyasu, T. Tsukuda, J. Phys. Chem. A 120, 957–963 (2016)
135. S. Muramatsu, K. Koyasu, T. Tsukuda, Chem. Lett. 46, 676–679 (2017)
136. S. Muramatsu, T. Tsukuda, Chem. Asian J. 14, 3763–3772 (2019)
137. R.L. Whetten, D.M. Cox, D.J. Trevor, A. Kaldor, Phys. Rev. Lett. 54, 1494–1497 (1985)
138. R.L. Whetten, M.R. Zakin, D.M. Cox, D.J. Trevor, A. Kaldor, J. Chem. Phys. 85, 1697–1698
(1986)
139. K.J. Taylor, C.L. Pettiette-Hall, O. Cheshnovsky, R.E. Smalley, J. Chem. Phys. 96, 3319–3329
(1992)
140. H. Handschuh, C.-Y. Cha, P.S. Bechthold, G. Ganteför, W. Eberhardt, J. Chem. Phys. 102,
6406 (1995)
141. S. Bulusu, X. Li, L.-S. Wang, X.C. Zeng, Proc. Natl. Acad. Sci. U. S. A. 103, 8326–8330
(2006)
142. W. Huang, S. Bulusu, R. Pal, X.C. Zeng, L.S. Wang, ACS Nano 3, 1225–1230 (2009)
143. S. Bulusu, X. Li, L.-S. Wang, X.C. Zeng, J. Phys. Chem. C 111, 4190–4198 (2007)
144. J. Li, X. Li, H.-J. Zhai, L.-S. Wang, Science 299, 864–867 (2003)
145. W. Huang, M. Ji, C.-D. Dong, X. Gu, L.-M. Wang, X.G. Gong, L.-S. Wang, ACS Nano 2,
897–904 (2008)
146. N. Shao, W. Huang, Y. Gao, L.-M. Wang, X. Li, L.-S. Wang, X.C. Zeng, J. Am. Chem. Soc.
132, 6596–6605 (2010)
147. N. Shao, W. Huang, W.-N. Mei, L.S. Wang, Q. Wu, X.C. Zeng, J. Phys. Chem. C 118,
6887–6892 (2014)
148. S. Pande, W. Huang, N. Shao, L.M. Wang, N. Khetrapal, W.N. Mei, T. Jian, L.S. Wang, X.
C. Zeng, ACS Nano (2016)
149. B. Yoon, P. Koskinen, B. Huber, O. Kostko, B. von Issendorff, H. Häkkinen, M. Moseler, U.
Landman, ChemPhysChem 8, 157–161 (2007)
150. H. Häkkinen, B. Yoon, U. Landman, X. Li, H.-J. Zhai, L.-S. Wang, J. Phys. Chem. A 107,
6168–6175 (2003)
151. B. Yin, Q. Du, L. Geng, H. Zhang, Z. Luo, S. Zhou, J. Zhao, J. Phys. Chem. Lett. 11, 5807–5814
(2020)
152. B. Yin, T. Wang, Y. Chen, J. Yang, G. Wang, X. Xing, Int. J. Mass Spectrom. 451, 116312
(2020)
