179 - 179 |
Who, what, when, where, why [Anonymous] |
180 - 181 |
The literature of promises Toumey C |
185 - 186 |
Surface patterning: Silicon falls into line Bent SF |
186 - 186 |
Fundamental physics: A most unusual crystal Rodgers P |
187 - 188 |
Molecular junctions: Seeing is believing Venkataraman L |
188 - 189 |
Nanomanipulation: Molecular cranes swing into action Duwez AS |
190 - 191 |
Nanotube devices: Watching electrons in real time Habenicht BF, Prezhdo OV |
191 - 192 |
Nanotoxicology: Are carbon nanotubes safe? Zhao YL, Xing GM, Chai ZF |
195 - 200 |
Self-organized nanotube serpentines Geblinger N, Ismach A, Joselevich E |
201 - 205 |
Terahertz time-domain measurement of ballistic electron resonance in a single-walled carbon nanotube Zhong ZH, Gabor NM, Sharping JE, Gaeta AL, McEuen PL |
206 - 209 |
Intrinsic and extrinsic performance limits of graphene devices on SiO2 Chen JH, Jang C, Xiao SD, Ishigami M, Fuhrer MS |
210 - 215 |
Monitoring dopants by Raman scattering in an electrochemically top-gated graphene transistor Das A, Pisana S, Chakraborty B, Piscanec S, Saha SK, Waghmare UV, Novoselov KS, Krishnamurthy HR, Geim AK, Ferrari AC, Sood AK |
216 - 221 |
A pilot toxicology study of single-walled carbon nanotubes in a small sample of mice Schipper ML, Nakayama-Ratchford N, Davis CR, Kam NWS, Chu P, Liu Z, Sun XM, Dai HJ, Gambhir SS |
222 - 228 |
Dipole-directed assembly of lines of 1,5-dichloropentane on silicon substrates by displacement of surface charge Harikumar KR, Lim TB, Mcnab IR, Polanyi JC, Zotti L, Ayissi S, Hofer WA |
229 - 233 |
Reversible electron-transfer reactions within a nanoscale metal oxide cage mediated by metallic substrates Fleming C, Long DL, Mcmillan N, Johnston J, Bovet N, Dhanak V, Gadegaard N, Kogerler P, Cronin L, Kadodwala M |
234 - 239 |
Structural engineering of nanoporous anodic aluminium oxide by pulse anodization of aluminium Lee W, Schwirn K, Steinhart M, Pippel E, Scholz R, Gosele U |