36
2 Instrumentation for Cluster Science
262. A. Halder, C. Liu, Z. Liu, J.D. Emery, M.J. Pellin, L.A. Curtiss, P. Zapol, S. Vajda, A.B.F.
Martinson, J. Phys. Chem. C 122, 9965–9972 (2018)
263. A. Halder, L.A. Curtiss, A. Fortunelli, S. Vajda, J. Chem. Phys. 148, 110901 (2018)
264. J. Laskin, G.E. Johnson, J. Warneke, V. Prabhakaran, Angew. Chem. Int. Ed. 57, 16270–16284
(2018)
265. S.A. Miller, H. Luo, S.J. Pachuta, R.G. Cooks, Science 275, 1447–1450 (1997)
266. M. Nesselberger, M. Roefzaad, R.F. Hamou, P.U. Biedermann, F.F. Schweinberger, S. Kunz,
K. Schloegl, G.K. Wiberg, S. Ashton, U. Heiz, K.J. Mayrhofer, M. Arenz, Nat. Mater. 12,
919–924 (2013)
267. K. Wettergren, F.F. Schweinberger, D. Deiana, C.J. Ridge, A.S. Crampton, M.D. Rotzer, T.W.
Hansen, V.P. Zhdanov, U. Heiz, C. Langhammer, Nano Lett. 14, 5803–5809 (2014)
268. M. Rondelli, G. Zwaschka, M. Krause, M.D. Rötzer, M.N. Hedhili, M.P. Högerl, V. D’Elia,
F.F. Schweinberger, J.-M. Basset, U. Heiz, Acs Catal. 7, 4152–4162 (2017)
269. Y. Lei, F. Mehmood, S. Lee, J. Greeley, B. Lee, S. Seifert, R.E. Winans, J.W. Elam, R.J.
Meyer, P.C. Redfern, D. Teschner, R. Schlögl, M.J. Pellin, L.A. Curtiss, S. Vajda, Science
328, 224–228 (2010)
270. C. Cui, Z. Luo, J. Yao, CCS Chem. 1, 215–225 (2019)
271. H. Zhang, C. Cui, Z. Luo, J. Phys. Chem. C 124, 6260–6266 (2020)
272. G. Kwon, G.A. Ferguson, C.J. Heard, E.C. Tyo, C. Yin, J. DeBartolo, S. Seifert, R.E. Winans,
A.J. Kropf, J. Greeley, R.L. Johnston, L.A. Curtiss, M.J. Pellin, S. Vajda, ACS Nano 7,
5808–5817 (2013)
273. J.M. Lisy, in Progress in Experimental and Theoretical Studies of Clusters (2015), pp. 79–119
274. H. Häkkinen, B. Yoon, U. Landman, X. Li, H.-J. Zhai, L.-S. Wang, J. Phys. Chem. A 107,
6168–6175 (2003)
275. F.A. Akin, C.C. Jarrold, J. Chem. Phys. 118, 5841 (2003)
276. F.A. Akin, C.C. Jarrold, J. Chem. Phys. 118, 5841–5851 (2003)
277. H.F. Bettinger, Angew. Chem. Int. Ed. 49, 670–671 (2010)
278. W.J. Chen, H.J. Zhai, Y.F. Zhang, X. Huang, L.S. Wang, J. Phys. Chem. A 114, 5958–5966
(2010)
279. U. Das, K. Raghavachari, C.C. Jarrold, J. Chem. Phys. 122, 014313 (2005)
280. S.R. Desai, H.B. Wu, C.M. Rohlfing, L.S. Wang, J. Chem. Phys. 106, 1309–1317 (1997)
281. K. Dumbuya, G. Cabailh, R. Lazzari, J. Jupille, L. Ringel, M. Pistor, O. Lytken, H.P. Steinrück,
J.M. Gottfried, Catal. Today 181, 20–25 (2012)
282. M.A. Duncan, A.M. Knight, Y. Negishi, S. Nagao, K. Judai, A. Nakajima, K. Kaya, J. Phys.
Chem. A 105, 10093–10097 (2001)
283. S.M.E. Green, S. Alex, N.L. Fleischer, E.L. Millam, T.P. Marcy, D.G. Leopold, J. Chem.
Phys. 114, 2653–2668 (2001)
284. A. Grubisic, H. Wang, Y.J. Ko, K.H. Bowen, J. Chem. Phys. 129, 054302 (2008)
285. R.F. Gunion, S.J. DixonWarren, W.C. Lineberger, M.D. Morse, J. Chem. Phys. 104, 1765–
1773 (1996)
286. G.L. Gutsev, C.W. Bauschlicher, H.-J. Zhai, L.-S. Wang, J. Chem. Phys. 119, 11135 (2003)
287. T. Herranz, X.Y. Deng, A. Cabot, P. Alivisatos, Z. Liu, G. Soler-Illia, M. Salmeron, Catal.
Today 143, 158–166 (2009)
288. J.K.L. Knappenberger, P.A. Clayborne, J.U. Reveles, M.A. Sobhy, J.C.E. Jones, U.U. Gupta,
S.N. Khanna, I. Iordanov, J. Sofo, J.A.W. Castleman, ACS Nano 1, 319–326 (2007)
289. K.L. Knappenberger Jr., C.E. Jones, M.A. Sobhy, I. Iordanov, J. Sofo, A.W. Castleman Jr., J.
Phys. Chem. A 110, 12814–12821 (2006)
290. S. Lee, G.W. Zajac, D.W. Goodman, Top. Catal. 38, 127–132 (2006)
291. R.Z. Li, H.G. Xu, G.J. Cao, Y.C. Zhao, W.J. Zheng, J. Chem. Phys. 135, 134307 (2011)
292. S.G. Li, H.J. Zhai, L.S. Wang, D.A. Dixon, J. Phys. Chem. A 113, 11273–11288 (2009)
293. X. Li, S.S. Liu, W. Chen, L.-S. Wang, J. Chem. Phys. 111, 2464 (1999)
294. X. Li, L.S. Wang, J. Chem. Phys. 111, 8389–8395 (1999)
295. X. Li, L.S. Wang, A.I. Boldyrev, J. Simons, J. Am. Chem. Soc. 121, 6033–6038 (1999)
296. X. Li, L.S. Wang, N.A. Cannon, A.I. Boldyrev, J. Chem. Phys. 116, 1330–1338 (2002)
2 Instrumentation for Cluster Science
262. A. Halder, C. Liu, Z. Liu, J.D. Emery, M.J. Pellin, L.A. Curtiss, P. Zapol, S. Vajda, A.B.F.
Martinson, J. Phys. Chem. C 122, 9965–9972 (2018)
263. A. Halder, L.A. Curtiss, A. Fortunelli, S. Vajda, J. Chem. Phys. 148, 110901 (2018)
264. J. Laskin, G.E. Johnson, J. Warneke, V. Prabhakaran, Angew. Chem. Int. Ed. 57, 16270–16284
(2018)
265. S.A. Miller, H. Luo, S.J. Pachuta, R.G. Cooks, Science 275, 1447–1450 (1997)
266. M. Nesselberger, M. Roefzaad, R.F. Hamou, P.U. Biedermann, F.F. Schweinberger, S. Kunz,
K. Schloegl, G.K. Wiberg, S. Ashton, U. Heiz, K.J. Mayrhofer, M. Arenz, Nat. Mater. 12,
919–924 (2013)
267. K. Wettergren, F.F. Schweinberger, D. Deiana, C.J. Ridge, A.S. Crampton, M.D. Rotzer, T.W.
Hansen, V.P. Zhdanov, U. Heiz, C. Langhammer, Nano Lett. 14, 5803–5809 (2014)
268. M. Rondelli, G. Zwaschka, M. Krause, M.D. Rötzer, M.N. Hedhili, M.P. Högerl, V. D’Elia,
F.F. Schweinberger, J.-M. Basset, U. Heiz, Acs Catal. 7, 4152–4162 (2017)
269. Y. Lei, F. Mehmood, S. Lee, J. Greeley, B. Lee, S. Seifert, R.E. Winans, J.W. Elam, R.J.
Meyer, P.C. Redfern, D. Teschner, R. Schlögl, M.J. Pellin, L.A. Curtiss, S. Vajda, Science
328, 224–228 (2010)
270. C. Cui, Z. Luo, J. Yao, CCS Chem. 1, 215–225 (2019)
271. H. Zhang, C. Cui, Z. Luo, J. Phys. Chem. C 124, 6260–6266 (2020)
272. G. Kwon, G.A. Ferguson, C.J. Heard, E.C. Tyo, C. Yin, J. DeBartolo, S. Seifert, R.E. Winans,
A.J. Kropf, J. Greeley, R.L. Johnston, L.A. Curtiss, M.J. Pellin, S. Vajda, ACS Nano 7,
5808–5817 (2013)
273. J.M. Lisy, in Progress in Experimental and Theoretical Studies of Clusters (2015), pp. 79–119
274. H. Häkkinen, B. Yoon, U. Landman, X. Li, H.-J. Zhai, L.-S. Wang, J. Phys. Chem. A 107,
6168–6175 (2003)
275. F.A. Akin, C.C. Jarrold, J. Chem. Phys. 118, 5841 (2003)
276. F.A. Akin, C.C. Jarrold, J. Chem. Phys. 118, 5841–5851 (2003)
277. H.F. Bettinger, Angew. Chem. Int. Ed. 49, 670–671 (2010)
278. W.J. Chen, H.J. Zhai, Y.F. Zhang, X. Huang, L.S. Wang, J. Phys. Chem. A 114, 5958–5966
(2010)
279. U. Das, K. Raghavachari, C.C. Jarrold, J. Chem. Phys. 122, 014313 (2005)
280. S.R. Desai, H.B. Wu, C.M. Rohlfing, L.S. Wang, J. Chem. Phys. 106, 1309–1317 (1997)
281. K. Dumbuya, G. Cabailh, R. Lazzari, J. Jupille, L. Ringel, M. Pistor, O. Lytken, H.P. Steinrück,
J.M. Gottfried, Catal. Today 181, 20–25 (2012)
282. M.A. Duncan, A.M. Knight, Y. Negishi, S. Nagao, K. Judai, A. Nakajima, K. Kaya, J. Phys.
Chem. A 105, 10093–10097 (2001)
283. S.M.E. Green, S. Alex, N.L. Fleischer, E.L. Millam, T.P. Marcy, D.G. Leopold, J. Chem.
Phys. 114, 2653–2668 (2001)
284. A. Grubisic, H. Wang, Y.J. Ko, K.H. Bowen, J. Chem. Phys. 129, 054302 (2008)
285. R.F. Gunion, S.J. DixonWarren, W.C. Lineberger, M.D. Morse, J. Chem. Phys. 104, 1765–
1773 (1996)
286. G.L. Gutsev, C.W. Bauschlicher, H.-J. Zhai, L.-S. Wang, J. Chem. Phys. 119, 11135 (2003)
287. T. Herranz, X.Y. Deng, A. Cabot, P. Alivisatos, Z. Liu, G. Soler-Illia, M. Salmeron, Catal.
Today 143, 158–166 (2009)
288. J.K.L. Knappenberger, P.A. Clayborne, J.U. Reveles, M.A. Sobhy, J.C.E. Jones, U.U. Gupta,
S.N. Khanna, I. Iordanov, J. Sofo, J.A.W. Castleman, ACS Nano 1, 319–326 (2007)
289. K.L. Knappenberger Jr., C.E. Jones, M.A. Sobhy, I. Iordanov, J. Sofo, A.W. Castleman Jr., J.
Phys. Chem. A 110, 12814–12821 (2006)
290. S. Lee, G.W. Zajac, D.W. Goodman, Top. Catal. 38, 127–132 (2006)
291. R.Z. Li, H.G. Xu, G.J. Cao, Y.C. Zhao, W.J. Zheng, J. Chem. Phys. 135, 134307 (2011)
292. S.G. Li, H.J. Zhai, L.S. Wang, D.A. Dixon, J. Phys. Chem. A 113, 11273–11288 (2009)
293. X. Li, S.S. Liu, W. Chen, L.-S. Wang, J. Chem. Phys. 111, 2464 (1999)
294. X. Li, L.S. Wang, J. Chem. Phys. 111, 8389–8395 (1999)
295. X. Li, L.S. Wang, A.I. Boldyrev, J. Simons, J. Am. Chem. Soc. 121, 6033–6038 (1999)
296. X. Li, L.S. Wang, N.A. Cannon, A.I. Boldyrev, J. Chem. Phys. 116, 1330–1338 (2002)
