373 - 373 |
Guiding European materials science Gregory P |
375 - 388 |
Phasmids and polycatenar mesogens Nguyen HT, Destrade C, Malthete J |
389 - 391 |
Improved field-effect mobility in short oligothiophenes: Quaterthiophene and quinquethiophene Hajlaoui R, Horowitz G, Garnier F, ArceBrouchet A, Laigre L, ElKassmi A, Demanze F, Kouki F |
392 - 395 |
Microlithographic process for patterning conjugated emissive polymers Renak ML, Bazan GC, Roitman D |
395 - 398 |
Measurements of optical electric field intensities in microcavities using thin emissive polymer films Burns SE, Pfeffer N, Gruner J, Remmers M, Javoreck T, Neher D, Friend RH |
398 - 403 |
Poly(propyleneimine) dendromesogens with hexagonal columnar mesophase Cameron JH, Facher A, Lattermann G, Diele S |
403 - 407 |
Electrochemical redox behavior and electroluminescence in the mixed energy-sufficient system thianthrene and 2-(4-biphenyl)-5-(4-tert-butylphenyl)-1,3,4-oxadiazole Janietz S, Wedel A |
407 - 410 |
Elastomeric light valves Qin D, Xia YN, Whitesides GM |
410 - 413 |
3D organized self-assembled monolayer electrodes: A novel biosensor configuration Sampath S, Lev O |
413 - 417 |
Synthesis of nanometer-scale silver crystallites via a room-temperature electrostatic spraying process Hull PJ, Hutchison JL, Salata OV, Dobson PJ |
417 - 420 |
Room temperature silicon wafer bonding with ultra-thin polymer films Krauter G, Schumacher A, Gosele U, Jaworek T, Wegner G |
420 - 423 |
Sequential gas-phase formation of Al2O3 and SiO2 layers on aerosol-made TiO2 particles Fotou GP, Kodas TT |
423 - 426 |
An alternative design strategy for thin photorefractive polymer structures Aguilar M, Carrascosa M, AgulloLopez F |
426 - 429 |
Preserving a globular protein shape on glass slides: A self-assembled monolayer approach Yang ZH, Yu H |
431 - 436 |
Mesoporous materials by templating of liquid crystalline phases Goltner CG, Antonietti M |
437 - 439 |
Nanofibers Liu GJ |