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19
55. S. Link, M.A. El-Sayed, Shape and size dependence of radiative, non-radiative and
photothermal properties of gold nanocrystals. Int. Rev. Phys. Chem. 19(3), 409–453 (2000)
56. J. Jiang, X. Sun, X. Chen, B. Wang, Z. Chen, Y. Hu, Y. Guo, L. Zhang, Y. Ma, L. Gao, F.
Zheng, L. Jin, M. Chen, Z. Ma, Y. Zhou, N.P. Padture, K. Beach, H. Terrones, Y. Shi, D.
Gall, T.-M. Lu, E. Wertz, J. Feng, J. Shi, Carrier lifetime enhancement in halide perovskite
via remote epitaxy. Nat. Commun. 10(1), 4145 (2019)
57. J. Xie, H. Zhang, S. Li, R. Wang, X. Sun, M. Zhou, J. Zhou, X.W. Lou, Y. Xie, Defect-rich
MoS 2 ultrathin nanosheets with additional active edge sites for enhanced electrocatalytic
hydrogen evolution. Adv. Mater. 25(40), 5807–5813 (2013)
58. L. Pan, S. Xu, X. Liu, W. Qin, Z. Sun, W. Zheng, C.Q. Sun, Skin dominance of the dielectric
electronic-phononic-photonic attribute of nanoscaled silicon. Surf. Sci. Rep. 68(3–4), 418–
445 (2013)
59. M. Eddaoudi, J. Kim, N. Rosi, D. Vodak, J. Wachter, M. O’Keeffe, O.M. Yaghi, Systematic
design of pore size and functionality in isoreticular MOFs and their application in methane
storage. Science 295(5554), 469–472 (2002)
60. N. Stock, S. Biswas, Synthesis of metal-organic frameworks (MOFs): routes to various MOF
topologies, morphologies, and composites. Chem. Rev. 112(2), 933–969 (2011)
61. F.X.L. i Xamena, A. Abad, A. Corma, H. Garcia, MOFs as catalysts: activity, reusability and
shape-selectivity of a Pd-containing MOF. J. Catal. 250(2), 294–298 (2007)
62. M.S. Chen, D.W. Goodman, The structure of catalytically active gold on titania. Science
306(5694), 252–255 (2004)
63. N. Lopez, T. Janssens, B. Clausen, Y. Xu, M. Mavrikakis, T. Bligaard, J.K. Nørskov, On the
origin of the catalytic activity of gold nanoparticles for low-temperature CO oxidation. J.
Catal. 223(1), 232–235 (2004)
64. X. Zhang, C.Q. Sun, H. Hirao, Guanine binding to gold nanoparticles through nonbonding
interactions. PCCP 15(44), 19284–19292 (2013)
65. S. Dahl, A. Logadottir, R.C. Egeberg, J.H. Larsen, I. Chorkendorff, E. Tornqvist, J.K. Norskov,
Role of steps in N 2 activation on Ru(0001). Phys. Rev. Lett. 83(9), 1814–1817 (1999)
66. J. Woisetschlager, K. Gatterer, E.C. Fuchs, Experiments in a floating water bridge. Exp. Fluids
48(1), 121–131 (2010)
67. W.P. Tong, N.R. Tao, Z.B. Wang, J. Lu, K. Lu, Nitriding iron at lower temperatures. Science
299(5607), 686–688 (2003)
68. M. Asscher, G.A. Somorjai, The remarkable surface structure sensitivity of the ammonia
synthesis over rhenium single crystals. Surf. Sci. Lett. 143(1), L389–L392 (1984)
69. M.J. Gladys, I. Ermanoski, G. Jackson, J.S. Quinton, J.E. Rowe, T.E. Madey, A high resolution
photoemission study of surface core-level shifts in clean and oxygen-covered Ir(2 1 0) surfaces.
J. Electron Spectrosc. Relat. Phenom. 135(2–3), 105–112 (2004)
70. H. Wang, A.S.Y. Chan, W. Chen, P. Kaghazchi, T. Jacob, T.E. Madey, Facet stability in
oxygen-induced nanofaceting of Re(1231). ACS Nano 1(5), 449–455 (2007)
71. A. Kokalj, N. Bonini, C. Sbraccia, S. de Gironcoli, S. Baroni, Engineering the reactivity of
metal catalysts: a model study of methane dehydrogenation on Rh(111). J. Am. Chem. Soc.
126(51), 16732–16733 (2004)
72. G. Fratesi, S. de Gironcoli, Analysis of methane-to-methanol conversion on clean and
defective Rh surfaces. J. Chem. Phys. 125(4), 044701 (2006)
73. S. Abbet, A. Sanchez, U. Heiz, W.D. Schneider, A.M. Ferrari, G. Pacchioni, N. Rosch, Acetylene cyclotrimerization on supported size-selected Pd n clusters (1 <= n <= 30): one atom is
enough! J. Am. Chem. Soc. 122(14), 3453–3457 (2000)
74. S. Abbet, U. Heiz, H. Hakkinen, U. Landman, CO oxidation on a single Pd atom supported
on magnesia. Phys. Rev. Lett. 86(26), 5950–5953 (2001)
75. C.J. Zhang, P. Hu, The possibility of single C–H bond activation in CH 4 on a MoO 3 -supported
Pt catalyst: a density functional theory study. J. Chem. Phys. 116(10), 4281–4285 (2002)
76. E. Roduner, Size matters: why nanomaterials are different. Chem. Soc. Rev. 35(7), 583–592
(2006)
