Biomedical Engineering Reference
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90. Fleming, J.G., Lin, S.Y.: Three-dimensional photonic crystal with a stop band from 1.35 to
1.95
m. Opt. Lett. 24 , 49-51 (1999)
91. Noda, S., Tomoda, K., Yamamoto, N., Chutinan, A.: Full three dimensional photonic bandgap
crystals at near-infrared wavelengths. Science 289 , 604-606 (2000)
92. Birner, A., Wehrspohn, R.B., Gsele, U.M., Busch, K.: Silicon-based photonic crystals. Adv.
Mater. 13 , 377-388 (2001)
93. Masuda, H., Ohya, M., Asoh, H., Nakao, M., Nohtomi, M., Tamamura, T.: Photonic crystal
using anodic porous alumina. Jpn. J. Appl. Phys. 38 , L1403-L1405 (1999)
94. Wanke, M.C., Lehmann, O., Mller, K., Wen, Q.Z., Stuke, M.: Science 275 , 1284-1286 (1997)
95. Campbell, M., Sharp, D.N., Harrison, M.T., Denning, R.G., Turberfield, A.J.: Fabrication of
photonic crystals for the visible spectrum by holographic lithography. Nature 404 , 53-56
(2000)
96. Shoji, S., Kawata, S.: Photofabrication of three-dimensional photonic crystals by multibeam
laser interference into photopolymerizable resin. Appl. Phys. Lett. 76 , 2668 (2000)
97. Xia, Y., Gates, B., Yin, Y., Lu, Y.: Monodispersed colloidal spheres: old materials with new
applications. Adv. Mater. 12 , 693-713 (2000)
98. Schroden, R.C., Al-Daous, M., Blanford, C.F., Stein, A.: Optical properties of inverse opal
photonic crystals. Chem. Mater. 14 , 3305-3315 (2002)
99. Lpez, C.: Three-dimensional photonic bandgap materials: semiconductors for light. J. Opt. A
8 , R1 (2006)
100. Halaoui, L.I., Abrams, N.M., Mallouk, T.E.: Increasing the conversion efficiency of dye-
sensitized TiO 2 photoelectrochemical cells by coupling to photonic crystals. J. Phys. Chem.
B 109 , 6334-6342 (2005)
101. Judith, J.E.G., Vos, W.L.: Preparation of photonic crystals made of sir spheres in titania.
Science 281 , 802-804 (1998)
102. Norris, D.J., Vlasov, Y.A.: Chemical approaches to three-dimensional semiconductor pho-
tonic crystals. Adv. Mater. 13 , 371-376 (2001)
103. Hynninen, A.P., Thijssen, J.H.J., Vermolen, E.C.M., Dijkstra, M., van Blaaderen, A.: Self-
assembly route for photonic crystals with a bandgap in the visible region. Nat. Mater. 6 ,
202-205 (2007)
104. Velev, O.D.E., Kaler, W.: In situ assembly of colloidal particles into miniaturized biosensors.
Langmuir 15 , 3693-3698 (1999)
105. Joannopoulos, J.D., Villeneuve, P.R., Fan, S.: Photonic crystals: putting a new twist on light.
Nature 386 , 143-149 (1997)
106. Yamasaki, T., Tsutsui, T.: Spontaneous emission from fluorescent molecules embedded in
photonic crystals consisting of polystyrene microspheres. Appl. Phys. Lett. 72 , 1957 (1998)
107. Yang, S.M., Jang, S.G., Choi, D.G., Kim, S., Yu, H.K.: Nanomachining by colloidal
lithography. Small 2 , 458-475 (2006)
108. Murray, C.A., VanWinkle, D.H.: Experimental observation of two-stage melting in a classical
two-dimensional screened coulomb system. Phys. Rev. Lett. 58 , 1200-1203 (1987)
109. Bowen, W.R., Sharif, A.O.: Long-range electrostatic attraction between like-charge spheres
in a charged pore. Nature 393 , 663-665 (1998)
110. Kralchevsky, P.A., Denkov, N.D.: Capillary forces and structuring in layers of colloidal
particles. Curr. Opin. Colloid Interface Sci. 6 , 383-401 (2001)
111. Danov, K.D., Pouligny, B., Kralchevsky, P.A.: Capillary forces between colloidal particles
confined in a liquid film: the finite-meniscus problem. Langmuir 17 , 6599-6609 (2001)
112. Hurd, A.J., Schaefer, D.W.: Diffusion-limited aggregation in two dimensions. Phys. Rev. Lett.
54 , 1043-1046 (1985)
113. Burmeister, F., Schafle, C., Matthes, T., Bohmisch, M., Boneberg, J., Leiderer, P.: Colloid
monolayers as versatile lithographic masks. Langmuir 13 , 2983-2987 (1997)
114. Wickman, H.H., Korley, J.N.: Colloid crystal self-organization and dynamics at air/water
interface. Nature 393 , 445-447 (1998)
115. Paunov, V.N., Kralchevsky, P.A., Denkov, N.D., Nagayama, K.: Lateral capillary forces
between floating submillimeter particles. J. Colloid Interface Sci. 157 , 100-112 (1993)
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