Civil Engineering Reference
In-Depth Information
Niklasson G A, Granqvist C G and Hunderi O (1981), 'Effective medium models
for the optical properties of inhomogeneous materials', Appl Opt , 20, 26-30.
Niu C (2011), 'Carbon nanotube transparent conducting fi lms', MRS Bull , 36,
766-773.
Norrman S, Andersson T, Granqvist C G and Hunderi O (1978), 'Optical properties
of discontinuous gold fi lms', Phys Rev B , 18, 674-695.
Oka Y, Yao T and Yamamoto N (1990), 'Powder X-ray crystal structure of VO 2 (A),
J Solid State Chem , 86, 116-124.
Okazaki K, Sugai S, Muraoka Y and Hiroi Z (2006), 'Role of electron-electron and
electron-phonon interaction effects in the optical conductivity of VO 2 ', Phys Rev
B , 73, 165116.
Parkin I P, Binions R, Piccirillo C, Blackman C S and Manning T D (2008),
'Thermochromic coatings for intelligent architectural glazing', J Nano Res , 2,
1-20.
Reyes J M, Sayer M and Chen R (1976), 'Transport properties of tungsten-doped
VO 2 ', Can J Phys , 54, 408-412.
Richter B, Goldston D, Crabtree G, Glicksman L, Goldstein D, Greene D, Kammen
D, Levine M, Lubell M, Savitz M, Sperling D, Schlachter F, Scofi eld J and Dawson
J (2008), 'How America can look within to achieve energy security and reduce
global warming', Rev Mod Phys , 80, S1-S107.
Robinson-Gayle S, Kolokotroni M, Cripps A and Tanno S (2001), 'ETFE foil cush-
ions in roofs and atria', Construction Building Mater , 15, 323-327.
Saeli M, Piccirillo C, Parkin I P, Ridley I and Binions R (2010a), 'Nano-composite
thermochromic thin fi lms and their application in energy-effi cient glazing', Solar
Energy Mater Solar Cells , 94, 141-151.
Saeli M, Piccirillo C, Parkin I P, Binions R and Ridley I (2010b), 'Energy modeling
studies of thermochromic glazing', Energy Buildings , 42, 1666-1673.
Schelm S, Smith G B, Garrett P D and Fisher W K (2005), 'Tuning the surface-
plasmon resonance in nanoparticles for glazing applications', J Appl Phys , 97,
124314.
Selkowitz S E and Lampert C M (1990), 'Application of large-area chromogenics to
architectural glazing', in Lampert C M and Granqvist C G (eds), Large-Area
Chromogenics: Materials and Devices for Transmittance Control , SPIE Institutes
for Advanced Optical Technologies, Vol. IS 4, SPIE - The International Society
for Optical Engineering, Bellingham, WA, pp. 22-45.
Smith G B and Granqvist C G (2010), Green Nanotechnology: Solutions for Sustain-
ability and Energy in the Built Environment , CRC Press, Boca Raton, FL.
Smith G B, Niklasson G A, Svensson J S E M and Granqvist C G (1986), 'Noble-
metal-based transparent infrared refl ectors: experiments and theoretical analyses
for very thin gold fi lms', J Appl. Phys , 59, 571-581.
Stjerna B, Olsson E and Granqvist C G (1994), 'Electrical and optical properties of
RF sputtered tin oxide fi lms doped with oxygen vacancies, F, Sb, or Mo', J Appl
Phys , 76, 3797-3817.
Subrahmanyam A, Kumar C S and Karuppasamy K M (2007), 'A note on fast pro-
tonic solid state electrochromic device: NiO x /Ta 2 O 5 /WO 3− x ', Solar Energy Mater
Solar Cells , 91, 62-66.
Svensson J S E M and Granqvist C G (1984), 'Electrochromic tungsten oxide fi lms
for energy effi cient windows', Solar Energy Mater , 11, 29-34.
￿ ￿ ￿ ￿ ￿ ￿
Search WWH ::




Custom Search