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Oxide Semiconductor Thin-Film Transistors: A Review of Recent Advances
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E. Fortunato, P. Barquinha, R. Martins, Oxide Semiconductor Thin-Film Transistors: A Review of Recent Advances, Adv. Mat., 24, pp. 2945-2986, 2012.
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Adv. Mat.
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Fortunato, E.1
Barquinha, P.2
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84865737334
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Flexible metal-oxide devices made by RT photochemical activation of sol-gel films
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Y-H. Kim, JS Heo, TH Kim, S Park, MH Yoon, J Kim, MS Oh, GR Yi, YY Noh, SK Park, Flexible metal-oxide devices made by RT photochemical activation of sol-gel films, Nature, 489 pp. 128-U191, 2012.
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51749092382
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Versatile Use of Vertical-Phase-Separation-Induced Bilayer Structures in Organic Thin-Film Transistors
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L. Qiu, JA Lim, X Wang, XWH Lee, M Hwang, K Cho, Versatile Use of Vertical-Phase-Separation-Induced Bilayer Structures in Organic Thin-Film Transistors., Advanced Materials 20, pp. 1141-1145, 2008.
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Low-voltage all polymer transistors"
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Molecular and Organic Electronics Devices, Eds. Dinesh Aswal and Jatinder Yakhmi, Nova Science Publisher, New York, USA, pp. ISBN 978-1-60876-594-2
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N. Kaihovirta, and, R. Österbacka,. "Low-voltage all polymer transistors", in Molecular and Organic Electronics Devices, Eds., Dinesh Aswal, and, Jatinder Yakhmi, Recent Advances in Molecular and Polymer Devices, Nova Science Publisher, New York, USA (2010), pp 199-232. ISBN 978-1-60876-594-2.
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High-performance transparent inorganic-organic hybrid thin-film n-type transistors
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L. Wang, MH Yoon, G Lu, Y Yang, A Facchetti, T. Marks, High-performance transparent inorganic-organic hybrid thin-film n-type transistors, Nature Materials, 6 (4), pp 317, 2007.
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Marks, T.6
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6
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50649121902
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High-performance flexible hybrid field-effect transistors based on cellulose fiber paper
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E. Fortunato, N. Correia, P. Barquinha, L. Pereira, G. Goncalves, and, R. Martins, " High-performance flexible hybrid field-effect transistors based on cellulose fiber paper IEEE Electron Device Letters, vol. 29, pp. 988-990.
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IEEE Electron Device Letters
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Fortunato, E.1
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Barquinha, P.3
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Goncalves, G.5
Martins, R.6
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7
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80052303120
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Where science fiction meets reality? with oxide semiconductors!
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E. Fortunato, R. Martins, Where science fiction meets reality? With oxide semiconductors!, Phys. Stat. Sol.-Rapid Research Letters, 5 (9), pp. 336-339, Sept. 2011.
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(2011)
Phys. Stat. Sol. - Rapid Research Letters
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Fortunato, E.1
Martins, R.2
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8
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79955530812
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Paper electronics
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D. Tobjork, R. Osterbacka, " Paper electronics," Advanced Materials, vol. 23 (17), pp. 1935-1961, 2011.
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Advanced Materials
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Tobjork, D.1
Osterbacka, R.2
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9
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80052299822
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Electronics with and on paper
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R. Martins, I. Ferreira, E. Fortunato, Electronics with and on paper, Phys. St. Sol.-Rapid Research Letters 5, (9), pp. 332-335, Sept. 2011.
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Phys. St. Sol.-Rapid Research Letters
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Martins, R.1
Ferreira, I.2
Fortunato, E.3
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10
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80054705024
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Complementary Metal Oxide Semiconductor Technology with and on Paper
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R. Martins, A. Nathan, R. Barros, L. Pereira, P. Barquinha, N. Correia, R. Costa, A. Ahnood, I. Ferreira, E. Fortunato, Complementary Metal Oxide Semiconductor Technology With and On Paper, Advanced Materials 23 (2011), 4491.
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Advanced Materials
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Martins, R.1
Nathan, A.2
Barros, R.3
Pereira, L.4
Barquinha, P.5
Correia, N.6
Costa, R.7
Ahnood, A.8
Ferreira, I.9
Fortunato, E.10
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11
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84988044894
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Printable ion-gel gate dielectrics for low-voltage polymer thin-film transistors on plastic
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J. H. Cho, J. Lee, Y. Xia, B. Kim, Y. Y. He, M. J. Renn, T. P. Lodge, and, C. D. Frisbie, Printable ion-gel gate dielectrics for low-voltage polymer thin-film transistors on plastic, Nature Materials, vol. 7, pp. 900-906, Nov 2008.
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Cho, J.H.1
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Lodge, T.P.7
Frisbie, C.D.8
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12
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84877285565
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Recyclable, Flexible, Low-Power Oxide Electronics
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DOI: 10.1002/adfm.201202907
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Rodrigo F. P. Martins, Arman Ahnood, Nuno Correia, Luís M. N. P. Pereira, Raquel Barros, Pedro M. C. B. Barquinha, Ricardo Costa, Isabel M. M. Ferreira, Arokia Nathan, Elvira E. M. C. Fortunato, Recyclable, Flexible, Low-Power Oxide Electronics, Advance Functional Materials, DOI: 10.1002/adfm.201202907.
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Advance Functional Materials
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Rodrigo, F.P.M.1
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Barros, R.5
Barquinha, P.M.C.B.6
Costa, R.7
Ferreira, I.M.M.8
Nathan, A.9
Fortunato, E.E.M.C.10
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13
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84860372520
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Flexible and Transparent Paper-Based Ionic Diode Fabricated from Oppositely Charged Microfibrillated Cellulose
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W. Zhang, X. D. Zhang, C. H. Lu, Y. J. Wang, and, Y. L. Deng, " Flexible and Transparent Paper-Based Ionic Diode Fabricated from Oppositely Charged Microfibrillated Cellulose," Journal of Physical Chemistry C, 116, pp. 9227-9234, Apr 2012.
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14
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68849107869
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Understanding Wax Printing: A Simple Micropatterning Process for Paper-Based Microfluidics
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E. Carrilho, AW Martinez, MG Whitesides, Understanding Wax Printing: A Simple Micropatterning Process for Paper-Based Microfluidics, Analytical Chemestry, 81 (16), pp. 7091-7095 (2009).
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Analytical Chemestry
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Carrilho, E.1
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Programmable diagnostic devices made from paper and tape
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AW Martinez, ST Phillips, ZH Nie, CM Cheng, E Carrilho, BJ Wiley, GM Whitesides, Programmable diagnostic devices made from paper and tape, LAB ON A CHIP 10 (19), pp. 2499-2504, 2010.
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16
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84867560012
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Gold on paper-paper platform for Au-nanoprobe TB detection
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B. Veigas, JM Jacob, MN Costa, DS Santos, M Viveiros, J. Inacio, R. Martins, P. Barquinha, E. Fortunato, PV Baptista, Gold on paper-paper platform for Au-nanoprobe TB detection, Lab on Chip, 12, pp. 4802-488, 2012.
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Lab on Chip
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Veigas, B.1
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Martins, R.7
Barquinha, P.8
Fortunato, E.9
Baptista, P.V.10
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