Growth of single-walled carbon nanotubes from discrete catalytic nanoparticles of various sizes Y Li, W Kim, Y Zhang, M Rolandi, D Wang, H Dai The Journal of Physical Chemistry B 105 (46), 11424-11431, 2001 | 1033 | 2001 |
Preferential growth of semiconducting single-walled carbon nanotubes by a plasma enhanced CVD method Y Li, D Mann, M Rolandi, W Kim, A Ural, S Hung, A Javey, J Cao, D Wang, ... Nano letters 4 (2), 317-321, 2004 | 722 | 2004 |
A polysaccharide bioprotonic field-effect transistor C Zhong, Y Deng, AF Roudsari, A Kapetanovic, MP Anantram, M Rolandi Nature communications 2 (1), 476, 2011 | 289 | 2011 |
Miniature organic transistors with carbon nanotubes as quasi-one-dimensional electrodes P Qi, A Javey, M Rolandi, Q Wang, E Yenilmez, H Dai Journal of the American Chemical Society 126 (38), 11774-11775, 2004 | 271 | 2004 |
Chitin nanofiber transparent paper for flexible green electronics J Jin, D Lee, HG Im, YC Han, EG Jeong, M Rolandi, KC Choi, BS Bae Advanced Materials 28 (26), 5169-5175, 2016 | 252 | 2016 |
Grotthuss mechanisms: from proton transport in proton wires to bioprotonic devices T Miyake, M Rolandi Journal of Physics: Condensed Matter 28 (2), 023001, 2015 | 214 | 2015 |
A facile and patternable method for the surface modification of carbon nanotube forests using perfluoroarylazides SJ Pastine, D Okawa, B Kessler, M Rolandi, M Llorente, A Zettl, ... Journal of the American Chemical Society 130 (13), 4238-4239, 2008 | 206 | 2008 |
Protonic and electronic transport in hydrated thin films of the pigment eumelanin J Wünsche, Y Deng, P Kumar, E Di Mauro, E Josberger, J Sayago, ... Chemistry of Materials 27 (2), 436-442, 2015 | 180 | 2015 |
A disposable paper breathalyzer with an alcohol sensing organic electrochemical transistor E Bihar, Y Deng, T Miyake, M Saadaoui, GG Malliaras, M Rolandi Scientific reports 6 (1), 27582, 2016 | 166 | 2016 |
Aharonov-Bohm Interference and Beating in Single-Walled<? format?> Carbon-Nanotube Interferometers J Cao, Q Wang, M Rolandi, H Dai Physical review letters 93 (21), 216803, 2004 | 158 | 2004 |
Self-assembled chitin nanofibers and applications M Rolandi, R Rolandi Advances in colloid and interface science 207, 216-222, 2014 | 140 | 2014 |
Efficient formation of iron nanoparticle catalysts on silicon oxide by hydroxylamine for carbon nanotube synthesis and electronics HC Choi, S Kundaria, D Wang, A Javey, Q Wang, M Rolandi, H Dai Nano Letters 3 (2), 157-161, 2003 | 136 | 2003 |
Proton conductivity in ampullae of Lorenzini jelly EE Josberger, P Hassanzadeh, Y Deng, J Sohn, MJ Rego, CT Amemiya, ... Science Advances 2 (5), e1600112, 2016 | 128 | 2016 |
A biomimetic composite from solution self‐assembly of chitin nanofibers in a silk fibroin matrix J Jin, P Hassanzadeh, G Perotto, W Sun, MA Brenckle, D Kaplan, ... Advanced Materials 25 (32), 4482-4487, 2013 | 127 | 2013 |
H+-type and OH−-type biological protonic semiconductors and complementary devices Y Deng, E Josberger, J Jin, AF Roudsari, BA Helms, C Zhong, ... Scientific reports 3 (1), 2481, 2013 | 119 | 2013 |
Room-temperature bonding for plastic high-pressure microfluidic chips DA Mair, M Rolandi, M Snauko, R Noroski, F Svec, JMJ Fréchet Analytical chemistry 79 (13), 5097-5102, 2007 | 118 | 2007 |
Two‐terminal protonic devices with synaptic‐like short‐term depression and device memory EE Josberger, Y Deng, W Sun, R Kautz, M Rolandi Advanced materials 26 (29), 4986-4990, 2014 | 111 | 2014 |
A facile bottom-up route to self-assembled biogenic chitin nanofibers C Zhong, A Cooper, A Kapetanovic, Z Fang, M Zhang, M Rolandi Soft Matter 6 (21), 5298-5301, 2010 | 109 | 2010 |
A new scanning probe lithography scheme with a novel metal resist M Rolandi, CF Quate, H Dai Advanced Materials 14 (3), 191-194, 2002 | 102 | 2002 |
A non-enzymatic glucose sensor enabled by bioelectronic pH control X Strakosas, J Selberg, P Pansodtee, N Yonas, P Manapongpun, ... Scientific reports 9 (1), 10844, 2019 | 101 | 2019 |