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181. A.K. Badu-Tawiah, C. Wu, R.G. Cooks, Anal. Chem. 83, 2648–2654 (2011)
182. V.N. Popok, I. Barke, E.E.B. Campbell, K.-H. Meiwes-Broer, Surf. Sci. Rep. 66, 347–377
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183. J. Cyriac, M. Wleklinski, G. Li, L. Gao, R.G. Cooks, Analyst 137, 1363–1369 (2012)
184. G. Verbeck, W. Hoffmann, B. Walton, Analyst 137, 4393–4407 (2012)
185. G.E. Johnson, T. Priest, J. Laskin, J. Phys. Chem. C 116, 24977–24986 (2012)
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175. M.H. Chisholm, A.M. Macintosh, Chem. Rev. 105, 2949–2976 (2005)
176. L.M.C. Beltran, J.R. Long, Acc. Chem. Res. 38, 325–334 (2005)
177. G.E. Johnson, C. Wang, T. Priest, J. Laskin, Anal. Chem. 83, 8069–8072 (2011)
178. G.E. Johnson, Q. Hu, J. Laskin, in Annual Review of Analytical Chemistry, vol. 4, ed. by R.G.
Cooks, E.S. Yeung (2011), pp. 83–104
179. S. Nagaoka, K. Ikemoto, K. Horiuchi, A. Nakajima, J. Am. Chem. Soc. 133, 18719–18727
(2011)
180. H. Li, Y. Pei, X.C. Zeng, J. Chem. Phys. 133, 134707–134707 (2010)
181. A.K. Badu-Tawiah, C. Wu, R.G. Cooks, Anal. Chem. 83, 2648–2654 (2011)
182. V.N. Popok, I. Barke, E.E.B. Campbell, K.-H. Meiwes-Broer, Surf. Sci. Rep. 66, 347–377
(2011)
183. J. Cyriac, M. Wleklinski, G. Li, L. Gao, R.G. Cooks, Analyst 137, 1363–1369 (2012)
184. G. Verbeck, W. Hoffmann, B. Walton, Analyst 137, 4393–4407 (2012)
185. G.E. Johnson, T. Priest, J. Laskin, J. Phys. Chem. C 116, 24977–24986 (2012)
186. S.P. Price, X. Tong, C. Ridge, V. Shapovalov, Z. Hu, P. Kemper, H. Metiu, M.T. Bowers, S.K.
Buratto, Surf. Sci. 605, 972–976 (2011)
187. I. Rabin, W. Schulze, G. Ertl, C. Felix, C. Sieber, W. Harbich, J. Buttet, Chem. Phys. Lett.
320, 59–64 (2000)
188. J. Laskin, P. Wang, O. Hadjar, J. Phys. Chem. C 114, 5305–5311 (2010)
189. S. Nagaoka, K. Ikemoto, T. Matsumoto, M. Mitsui, A. Nakajima, J. Phys. Chem. C 112,
15824–15831 (2008)
190. W.P. Peng, G.E. Johnson, I.C. Fortmeyer, P. Wang, O. Hadjar, R.G. Cooks, J. Laskin, Phys.
Chem. Chem. Phys. 13, 267–275 (2011)
191. S.A. Miller, H. Luo, S.J. Pachuta, R.G. Cooks, Science 275, 1447–1450 (1997)
192. H. Luo, S.A. Miller, R.G. Cooks, S.J. Pachuta, Int. J. Mass Spectrom. Ion Processes 174,
193–217 (1998)
193. G.-Y. Liu, P. Fenter, C.E.D. Chidsey, D.F. Ogletree, P. Eisenberger, M. Salmeron, J. Chem.
Phys. 101, 4301–4306 (1994)
194. O. Hadjar, P. Wang, J.H. Futrell, Y. Dessiaterik, Z. Zhu, J.P. Cowin, M.J. Iedema, J. Laskin,
Anal. Chem. 79, 6566–6574 (2007)
195. P. Wang, J. Laskin, Angew. Chem. Int. Ed. 47, 6678–6680 (2008)
196. J.C. Love, L.A. Estroff, J.K. Kriebel, R.G. Nuzzo, G.M. Whitesides, Chem. Rev. 105, 1103–
1170 (2005)
197. U. Reimer, U. Reineke, J. Schneider-Mergener, Curr. Opin. Biotechnol. 13, 315–320 (2002)
198. D.A. Eastham, J. Phys. D Appl. Phys. 28, 2176–2180 (1995)
199. W. Mahoney, S.T. Lin, R.P. Andres, in Evolution of Thin Film and Surface Structure and
Morphology, vol. 355, ed. by B.G. Demczyk, E. Garfunkel, B.M. Clemens, E.D. Williams,
J.J. Cuomo (1995), pp. 83–88
200. P. Melinon, B. Prevel, V. Dupuis, A. Perez, B. Champagnon, Y. Guyot, M. Boudeulle, M.
Pellarin, P. Dugourd, M. Broyer, Mater. Sci. Eng. Struct. Mater. Prop. Microstruct. Process.
217, 69–73 (1996)
201. M. Han, Z.Y. Wang, P.P. Chen, S.W. Yu, G.H. Wang, Nucl. Instrum. Methods Phys. Res. Sect.
B Beam Interact. Mater. Atoms 135, 564–569 (1998)
202. W. Yamaguchi, K. Yoshimura, Y. Maruyama, K. Igarashi, S. Tanemura, J. Murakami, Chem.
Phys. Lett. 311, 415–420 (1999)
203. M.O. Watanabe, N. Uchida, T. Kanayama, Phys. Rev. B 61, 7219–7222 (2000)
204. W. Yamaguchi, K. Yoshimura, Y. Tai, Y. Maruyama, K. Igarashi, S. Tanemura, J. Murakami,
J. Chem. Phys. 112, 9961–9966 (2000)
205. B. Klipp, M. Grass, J. Muller, D. Stolcic, U. Lutz, G. Gantefor, T. Schlenker, J. Boneberg, P.
Leiderer, Appl. Phys. A Mater. Sci. Process. 73, 547–554 (2001)
206. C. Brechignac, P. Cahuzac, F. Carlier, N. Kebaili, J. Le Roux, A. Masson, Surf. Sci. 518,
192–200 (2002)
207. W.T. Nichols, D.T. O’Brien, G. Malyavanatham, M.F. Becker, J.W. Keto, in Nanophase and
Nanocomposite Materials Iv, vol. 703, ed. by S. Komarneni, J.C. Parker, R.A. Vaia, G.Q. Lu,
J.I. Matsushita (2002), pp. 209–214
