3 Plasmonically Enhanced Dye-Sensitized Solar Cells
145
15. K. Ishikawa, C.J. Wen, K. Yamada, T. Okubo, The photocurrent of dye-sensitized solar cells
enhanced by the surface plasmon resonance. J. Chem. Eng. Jpn. 37, 645 (2004)
16. S.D. Standridge, G.C. Schatz, J.T. Hupp, Toward Plasmonic Solar Cells: Protection of silver
nanoparticles via atomic layer deposition of TiO2. Langmuir 25, 2596 (2009)
17. H. Choi, W.T. Chen, P.V. Kamat, Know Thy Nano Neighbor. Plasmonic versus electron
charging effects of metal nanoparticles in dye-sensitized solar cells. ACS Nano 6, 4418 (2012)
18. S.D. Standridge, G.C. Schatz, J.T. Hupp, Distance dependence of plasmon-enhanced photocurrent in dye-sensitized solar cells. J. Am. Chem. Soc. 131, 8407 (2009)
19. G. Mie, Beiträge zur Optik trüber Medien, speziell kolloidaler Metallösungen. Ann. Phys. 25,
377 (1908)
20. M. Gratzel, Solar energy conversion by dye-sensitized photovoltaic cells. Inorg. Chem. 44,
6841 (2005)
21. M. Grätzel, Conversion of sunlight to electric power by nanocrystalline dye-sensitized solar
cells. J. Photochem. Photobiol. A 164, 3 (2004)
22. S. Altobello, R. Argazzi, S. Caramori, C. Contado, S. Da Fre, P. Rubino, C. Chone, G.
Larramona, C.A. Bignozzi, Sensitization of nanocrystalline TiO2 with black absorbers based
on Os and Ru polypyridine complexes. J. Am. Chem. Soc. 127, 15342 (2005)
23. L. Macor, F. Fungo, T. Tempesti, E.N. Durantini, L. Otero, E.M. Barea, F. Fabregat-Santiago,
J. Bisquert, Near-IR sensitization of wide band gap oxide semiconductor by axially anchored
Si-naphthalocyanines. Energy Environ. Sci. 2, 529 (2009)
24. S. Link, M.A. El-Sayed, Spectral properties and relaxation dynamics of surface plasmon
electronic oscillations in gold and silver nanodots and nanorods. J. Phys. Chem. B 103, 8410
(1999)
25. C. Graf, A. van Blaaderen, Metallodielectric colloidal core-shell particles for photonic applications. Langmuir 18, 524 (2002)
26. M. Ahmed, R. Narain, Rapid synthesis of gold nanorods using a one-step photochemical
strategy. Langmuir 26, 18392 (2010)
27. N.R. Jana, L. Gearheart, C.J. Murphy, Wet chemical synthesis of high aspect ratio cylindrical
gold nanorods. J. Phys. Chem. B 105, 4065 (2001)
28. N.R. Jana, L. Gearheart, C.J. Murphy, Wet chemical synthesis of silver nanorods and
nanowires of controllable aspect ratio. Chem. Comm. 37, 617 (2001)
29. F. Kim, J.H. Song, P.D. Yang, Photochemical synthesis of gold nanorods. J. Am. Chem. Soc.
124, 14316 (2002)
30. T.K. Sau, C.J. Murphy, Seeded high yield synthesis of short Au nanorods in aqueous solution.
Langmuir 20, 6414 (2004)
31. D. Seo, J.C. Park, H. Song, Polyhedral gold nanocrystals with O-h symmetry: from octahedra
to cubes. J. Am. Chem. Soc. 128, 14863 (2006)
32. A. Tao, P. Sinsermsuksakul, P.D. Yang, Polyhedral silver nanocrystals with distinct scattering
signatures. Angew. Chem. Int. Edit. 45, 4597 (2006)
33. J.A. Zhang, M.R. Langille, M.L. Personick, K. Zhang, S.Y. Li, C.A. Mirkin, Concave cubic
gold nanocrystals with high-index facets. J. Am. Chem. Soc. 132, 14012 (2010)
34. M.R. Langille, M.L. Personick, J. Zhang, C.A. Mirkin, Bottom-Up Synthesis of gold octahedra
with tailorable hollow features. J. Am. Chem. Soc. 133, 10414 (2011)
35. M.L. Personick, M.R. Langille, J. Zhang, C.A. Mirkin, Shape control of gold nanoparticles
by silver underpotential deposition. Nano Lett. 11, 3394 (2011)
36. M. Maillard, S. Giorgio, M.P. Pileni, Tuning the size of silver nanodisks with similar aspect
ratios: Synthesis and optical properties. J. Phys. Chem. B 107, 2466 (2003)
37. G.P. Lee, A.I. Minett, P.C. Innis, G.G. Wallace, A new twist: controlled shape-shifting of
silver nanoparticles from prisms to discs. J. Mater. Chem. 19, 8294 (2009)
38. R.C. Jin, Y.W. Cao, C.A. Mirkin, K.L. Kelly, G.C. Schatz, J.G. Zheng, Photoinduced conversion of silver nanospheres to nanoprisms. Science 294, 1901 (2001)
39. H.J. Yoo, J.E. Millstone, S.Z. Li, J.W. Jang, W. Wei, J.S. Wu, G.C. Schatz, C.A. Mirkin,
Core-shell triangular bifrustums. Nano Lett. 9, 3038 (2009)
145
15. K. Ishikawa, C.J. Wen, K. Yamada, T. Okubo, The photocurrent of dye-sensitized solar cells
enhanced by the surface plasmon resonance. J. Chem. Eng. Jpn. 37, 645 (2004)
16. S.D. Standridge, G.C. Schatz, J.T. Hupp, Toward Plasmonic Solar Cells: Protection of silver
nanoparticles via atomic layer deposition of TiO2. Langmuir 25, 2596 (2009)
17. H. Choi, W.T. Chen, P.V. Kamat, Know Thy Nano Neighbor. Plasmonic versus electron
charging effects of metal nanoparticles in dye-sensitized solar cells. ACS Nano 6, 4418 (2012)
18. S.D. Standridge, G.C. Schatz, J.T. Hupp, Distance dependence of plasmon-enhanced photocurrent in dye-sensitized solar cells. J. Am. Chem. Soc. 131, 8407 (2009)
19. G. Mie, Beiträge zur Optik trüber Medien, speziell kolloidaler Metallösungen. Ann. Phys. 25,
377 (1908)
20. M. Gratzel, Solar energy conversion by dye-sensitized photovoltaic cells. Inorg. Chem. 44,
6841 (2005)
21. M. Grätzel, Conversion of sunlight to electric power by nanocrystalline dye-sensitized solar
cells. J. Photochem. Photobiol. A 164, 3 (2004)
22. S. Altobello, R. Argazzi, S. Caramori, C. Contado, S. Da Fre, P. Rubino, C. Chone, G.
Larramona, C.A. Bignozzi, Sensitization of nanocrystalline TiO2 with black absorbers based
on Os and Ru polypyridine complexes. J. Am. Chem. Soc. 127, 15342 (2005)
23. L. Macor, F. Fungo, T. Tempesti, E.N. Durantini, L. Otero, E.M. Barea, F. Fabregat-Santiago,
J. Bisquert, Near-IR sensitization of wide band gap oxide semiconductor by axially anchored
Si-naphthalocyanines. Energy Environ. Sci. 2, 529 (2009)
24. S. Link, M.A. El-Sayed, Spectral properties and relaxation dynamics of surface plasmon
electronic oscillations in gold and silver nanodots and nanorods. J. Phys. Chem. B 103, 8410
(1999)
25. C. Graf, A. van Blaaderen, Metallodielectric colloidal core-shell particles for photonic applications. Langmuir 18, 524 (2002)
26. M. Ahmed, R. Narain, Rapid synthesis of gold nanorods using a one-step photochemical
strategy. Langmuir 26, 18392 (2010)
27. N.R. Jana, L. Gearheart, C.J. Murphy, Wet chemical synthesis of high aspect ratio cylindrical
gold nanorods. J. Phys. Chem. B 105, 4065 (2001)
28. N.R. Jana, L. Gearheart, C.J. Murphy, Wet chemical synthesis of silver nanorods and
nanowires of controllable aspect ratio. Chem. Comm. 37, 617 (2001)
29. F. Kim, J.H. Song, P.D. Yang, Photochemical synthesis of gold nanorods. J. Am. Chem. Soc.
124, 14316 (2002)
30. T.K. Sau, C.J. Murphy, Seeded high yield synthesis of short Au nanorods in aqueous solution.
Langmuir 20, 6414 (2004)
31. D. Seo, J.C. Park, H. Song, Polyhedral gold nanocrystals with O-h symmetry: from octahedra
to cubes. J. Am. Chem. Soc. 128, 14863 (2006)
32. A. Tao, P. Sinsermsuksakul, P.D. Yang, Polyhedral silver nanocrystals with distinct scattering
signatures. Angew. Chem. Int. Edit. 45, 4597 (2006)
33. J.A. Zhang, M.R. Langille, M.L. Personick, K. Zhang, S.Y. Li, C.A. Mirkin, Concave cubic
gold nanocrystals with high-index facets. J. Am. Chem. Soc. 132, 14012 (2010)
34. M.R. Langille, M.L. Personick, J. Zhang, C.A. Mirkin, Bottom-Up Synthesis of gold octahedra
with tailorable hollow features. J. Am. Chem. Soc. 133, 10414 (2011)
35. M.L. Personick, M.R. Langille, J. Zhang, C.A. Mirkin, Shape control of gold nanoparticles
by silver underpotential deposition. Nano Lett. 11, 3394 (2011)
36. M. Maillard, S. Giorgio, M.P. Pileni, Tuning the size of silver nanodisks with similar aspect
ratios: Synthesis and optical properties. J. Phys. Chem. B 107, 2466 (2003)
37. G.P. Lee, A.I. Minett, P.C. Innis, G.G. Wallace, A new twist: controlled shape-shifting of
silver nanoparticles from prisms to discs. J. Mater. Chem. 19, 8294 (2009)
38. R.C. Jin, Y.W. Cao, C.A. Mirkin, K.L. Kelly, G.C. Schatz, J.G. Zheng, Photoinduced conversion of silver nanospheres to nanoprisms. Science 294, 1901 (2001)
39. H.J. Yoo, J.E. Millstone, S.Z. Li, J.W. Jang, W. Wei, J.S. Wu, G.C. Schatz, C.A. Mirkin,
Core-shell triangular bifrustums. Nano Lett. 9, 3038 (2009)
