Publications

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131 M. A. Panzer, G. Zhang, D. Mann, X. Hu, E. Pop, H. Dai, and K. E. Goodson. “Thermal Properties of Metal-Coated Vertically Aligned Single-Wall Nanotube Arrays” Journal of Heat Transfer, Vol. 130, 052401, May 2008
130 Meike L. Schipper, Nozomi Nakayama-Ratchford, Corrine R. Davis, Nadine Wong Shi Kam, Pauline Chu, Zhuang Liu, Xiaoming Sun, Hongjie Dai, and Sanjiv S. Gambhir. “A pilot toxicology study of single-walled carbon nanotubes in a small sample of mice” Nature Nanotechnology, Vol. 3, 216-221, 2008
129 Kevin Welsher, Zhuang Liu, Dan Daranciang and Hongjie Dai. “Selective Probing and Imaging of Cells with Single Walled Carbon Nanotubes as Near-Infrared Fluorescent Molecules.” Nano Lett. Vol. 8, No. 2, 586-590, 2008
128 Li Zhang, Sasa Zaric, Xiaomin Tu, Xinran Wang, Wei Zhao, and Hongjie Dai. “Assessment of Chemically Separated Carbon Nanotubes for Nanoelectronics” J. AM. CHEM. SOC., 130, 2686-2691,2008
127 Zhuang Liu, Corrine Davis, Weibo Cai, Lina He, Xiaoyuan Chen, and Hongjie Dai. “Circulation and long-term fate of functionalized, biocompatible single-walled carbon nanotubes in mice probed by Raman spectroscopy” PNAS, Vol. 105, No. 5, 1410–1415, February 5, 2008
126 Xiaolin Li, Xinran Wang, Li Zhang, Sangwon Lee, and Hongjie Dai. “Chemically Derived, Ultrasmooth Graphene Nanoribbon Semiconductors” Science, Vol. 319, 1229-1232, February 29, 2008
125 Anton Nikitin, Xiaolin Li, Zhiyong Zhang, Hirohito Ogasawara, Hongjie Dai, and Anders Nilsson*. “Hydrogen Storage in Carbon Nanotubes through the Formation of Stable C-H Bonds” Nano Lett., Vol. 8, No. 1, 162-167, 2008
124 Xinran Wang, Li Zhang, Yuerui Lu, and Hongjie Dai, Y. K. Kato, Eric Pop. “Electrically driven light emission from hot single-walled carbon nanotubes at various temperatures and ambient pressures” APPLIED PHYSICS LETTERS, 91, 261102, 2007
123 Xiaolin Li, Xiaomin Tu, Sasa Zaric, Kevin Welsher, Won Seok Seo, Wei Zhao, and Hongjie Dai*. “Selective Synthesis Combined with Chemical Separation of Single-Walled Carbon Nanotubes for Chirality Selection” J. AM. CHEM. SOC., Vol. 129, 15770-15771, 2007
122 Zhuang Liu, Xiaoming Sun, Nozomi Nakayama-Ratchford, and Hongjie Dai*. “Supramolecular Chemistry on Water-Soluble Carbon Nanotubes for Drug Loading and Delivery” ACS NANO, Vol. 1, No. 1, 50-56, 2007
121 Rodney P. Feazell, Nozomi Nakayama-Ratchford, Hongjie Dai, and Stephen J. Lippard. “Soluble Single-Walled Carbon Nanotubes as Longboat Delivery Systems for Platinum(IV) Anticancer Drug Design” J. AM. CHEM. SOC., Vol. 129, 8438-8439, 2007
120 Ryan Tu, Li Zhang, Yoshio Nishi, and Hongjie Dai. “Measuring the Capacitance of Individual Semiconductor Nanowires for Carrier Mobility Assessment” Nano Letters, Vol.7, No. 6, 1561-1565, 2007
119 Eric Pop, David A. Mann, Kenneth E. Goodson, Hongjie Dai. “Electrical and thermal transport in metallic single-wall carbon nanotubes on insulating substrates” J. Appl. Phys. 101, 093710, 2007
118 Zhuang Liu, Mark Winters, Mark Holodniy, Hongjie Dai. “siRNA Delivery into Human T Cells and Primary Cells with Carbon-Nanotube Transporters” Angew. Chem. Int. Ed. 46, 2023 –2027, 2007
117 Nozomi Nakayama-Ratchford, Sarunya Bangsaruntip, Xiaoming Sun, Kevin Welsher, Hongjie Dai. “Noncovalent Functionalization of Carbon Nanotubes by Fluorescein-Polyethylene Glycol: Supramolecular Conjugates with pH-Dependent Absorbance and Fluorescence” JACS Communications [Online] February 7, 2007
116 Zhuang Liu, Weibo Cai, Lina He, Nozomi Nakayama, Kai Chen, Xiaoming Sun, Xiayuan Chen, Hongjie Dai. "In vivo biodistribution and highly efficient tumour targeting of carbon nanotubes in mice" Nature Nanotechnology, Vol. 2, 47-52, January 2007
115 David Mann, Y. K. Kato, Anika Kinkhabwala, Eric Pop, Jien Cao, Xinran Wang, Li Zhang, Qian Wang, Jing Guo, Hongjie Dai. "Electrically driven thermal light emission from individual single-walled carbon "Nature Nanotechnology, Vol. 2, 33-38, January 2007
114 Guangyu Zhang, Pengfei Qi, Xinran Wang, Yuerui Lu, Xiaolin Li, Ryan Tu, Sarunya Bangsaruntip, David Mann, Li Zhang, Hongjie Dai. "Selective Etching of Metallic Carbon Nanotubes by Gas-Phase Reaction" Science, Vol 314, 974-977, 10 Nov 2006
113 Li Zhang, Ryan Tu, and Hongjie Dai. "Parallel Core-Shell Metal-Dielectric-Semiconductor Germanium Nanowires for High-Current Surround-Gate Field-Effect Transistors" Nano Letters, vol. 6, No. 12. 2785-2789, 2006
112 Won Seok Seo, Jin Hyung Lee, Xiaoming Sun, Yoriyasu Suzuki, David Mann, Zhuang Liu, Masahiro Terashima, Philip C. Yang, Michael V. McConnell, Dwight G. Nishimura, and Hongjie Dai. "FeCo/graphitic-shell nanocrystals as advancedmagnetic-resonance-imaging and near-infrared agents"Nature Materials, VOL 5, 971, 2006
111 Hongjie Dai, Ali Javey, Eric Pop, David Mann and Yuerui Lu. "Electrical Transport Properties and Field-Effect Transistors of Carbon Nanotubes" NANO: Brief Reports and Reviews, vol. 1, No. 1, 1-4, 2006
110 D. Wang, H. Dai, "Germanium nanowires: from synthesis, surface chemistry, and assembly to devices" Appl. Phys. A 85, 217-225, 2006
109 Guangyu Zhang, Pengfei Qi, Xinran Wang, Yuerui Lu, David Mann, Xiaolin Li, and Hongjie Dai, "Hydrogenation and Hydrocarbonation and Etching of Single-Walled Carbon Nanotubes" J. AM. CHEM. SOC. 128, 6026-6027, 2006
108 Yuerui Lu, Sarunya Bangsaruntip, Xinran Wang, Li Zhang, Yoshio Nishi, and Hongjie Dai, "DNA Functionalization of Carbon Nanotubes for Ultrathin Atomic Layer Deposition of High K Dielectrics for Nanotube Transistors with 60 mV/Decade Switching" J. AM. CHEM. SOC. 128, 3518-3519, 2006
107 E. Pop, D. Mann, J. Reifenberg, K. E. Goodson and H. Dai, "Electro-Thermal Transport in Metallic Single-Wall Carbon Nanotubes for Interconnect Applications," IEEE Intl. Electron Devices Meeting (IEDM), Washington, DC., Dec. 2005
106 E. Pop, D. Mann, Q. Wang, K. E. Goodson and H. Dai, "Thermal Conductance of an Individual Single-Wall Carbon Nanotube above Room Temperature," Nano Letters, vol. 6, no. 1, p. 96, 2006
105 David Mann, Eric Pop, Jien Cao, Qian Wang, Kenneth Goodson, and Hongjie Dai "Thermally and Molecularly Stimulated Relaxation of Hot Phonons in Suspended Carbon Nanotubes" Physical Letters B 110, 1502-1505 2006
104 A. Nikitin, H. Ogasawara, D. Mann, R. Denecke, Z. Zhang, H. Dai, K. Cho, and A. Nilsson, "Hydrogenation of Single-Walled Carbon Nanotubes" Phys. Rev. Lett. 95, 225507 2005.
103 Nadine Wong Shi Kam, Zhuang Liu, and Hongjie Dai "Carbon Nanotubes as Intracellular Transporters for Proteins and DNA: An Investigation of the Uptake Mechanism and Pathway" Angew. Chem. Int. Ed., 44, 1 – 6, 2005
102 Guangyu Zhang, David Mann, Li Zhang, Ali Javey, Yiming Li, Erhan Yenilmez, Qian Wang, James P. McVittie, Yoshio Nishi,, James Gibbons, and Hongjie Dai, "Ultra-high-yield growth of vertical single-walled carbon nanotubes: Hidden roles of hydrogen and oxygen" PNAS 102 no. 45 16141–16145 2005
101 Woong Kim, Ali Javey, Ryan Tu, Jien Cao, Qian Wang, and Hongjie Dai, "Electrical contacts to carbon nanotubes down to 1 nm in diameter", APPLIED PHYSICS LETTERS 87, 173101 2005
100 Eric Pop, David Mann, Jien Cao, Qian Wang, Kenneth Goodson, and Hongjie Dai, "Negative Differential Conductance and Hot Phonons in Suspended Nanotube Molecular Wires" Phys. Rev. Lett. 95, 155505 2005
99 Jien Cao, Qian Wang and Hongjie Dai, "Electron transport in very clean, as-grown suspended carbon nanotubes", Nature Materials VOL 4 OCTOBER 2005
98 Nadine Wong Shi Kam, Zhuang Liu, and Hongjie Dai, “Functionalization of Carbon Nanotubes via Cleavable Disulfide Bonds for Efficient Intracellular Delivery of siRNA and Potent Gene Silencing” J. AM. CHEM. SOC. 127, 12492-12493 2005.
97 Ali Javey and Hongjie Dai, "Regular Arrays of 2 nm Metal Nanoparticles for Deterministic Synthesis of Nanomaterials" J. AM. CHEM. SOC. 127, 11942-11943 2005.
96 Nadine Wong Shi Kam, Michael O’Connell, Jeffrey A. Wisdom, and Hongjie Dai "Carbon nanotubes as multifunctional biological transporters and near-infrared agents for selective cancer cell destruction." PNAS102 11600–11605 2005.
95 Dunwei Wang, Ying-Lan Chang, Zhuang Liu, and Hongjie Dai "Oxidation Resistant Germanium Nanowires: Bulk Synthesis, Long Chain Alkanethiol Functionalization, and Langmuir-Blodgett Assembly" J. AM. CHEM. SOC. 127, 11871-11875 2005.
94 Nadine Wong Shi Kam and Hongjie Dai "Carbon Nanotubes as Intracellular Protein Transporters: Generality and Biological Functionality" J. AM. CHEM. SOC., 127, 6021-6026 2005.
93 Yiming Li, Shu Peng, David Mann, Jien Cao, Ryan Tu, K. J. Cho, and Hongjie Dai "On the Origin of Preferential Growth of Semiconducting Single-Walled Carbon Nanotubes" J. Phys. Chem. B, Vol. 109, No. 15, 2005
92 Dunwei Wang, Ryan Tu, Li Zhang, and Hongjie Dai "Deterministic One-to-One Synthesis of Germanium Nanowires and Individual Gold Nanoseed Patterning for Aligned Nanowire Arrays" Angew. Chem. Int. Ed., 44, 2–5 2005.
91 Ali Javey, Ryan Tu, Damon Farmer, Jing Guo, Roy Gordon, and Hongjie Dai, "High Performance N-Type Carbon Nanotube Field-Effect Transistors with Chemically Doped Contacts." Nano Letters, 5, 345-348, 2005.
90 Alireza Nojeh, Ant Ural, R. Fabian Pease, and Hongjie Dai," Electric-field-directed growth of carbon nanotubes in two dimensions," J. Vac. Sci. Technol. B 22, 3421-3425, 2004
89 Alireza Nojeh, Wai-Kin Wong, Aaron W. Baum, R. Fabian Pease, and Hongjie Dai, "Scanning electron microscopy of field-emitting individual single-walled carbon nanotubes," Appl. Phys. Lett. 85, 112-114, 2004.
88 Alireza Nojeh, Wai-Kin Wong, Eric Yieh, R. Fabian Pease, and Hongjie Dai, "Electron beam stimulated field-emission from single-walled carbon nanotubes," J. Vac. Sci. Technol. B 22, 3124-3127, 2004.
87 Randal J. Grow, Qian Wang, Jien Cao, Dunwei Wang, and Hongjie Dai, "Piezoresistance of carbon nanotubes on deformable thin-film membranes", Appl. Phys. Lett. 86, 093104, 2005.
86 Alireza Nojeh, Wai-Kin Wong, Eric Yieh, R. Fabian Pease, Hongjie Dai "Electron beam stimulated field-emission from single-walled carbon nanotubes" J. Vac. Sci. Technol. B 22, 3124-3127, 2004.
85 Zhifeng Deng, Erhan Yenilmez, Josh Leu, J. E. Hoffman, Eric W. J. Straver, Kathryn A. Moler and Hongjie Dai"Metal-coated carbon nanotube tips for magnetic force microscopy". MAppl. Phys. Lett. 85, 6263-6265 2004.
84 Nadine Wong Shi Kam, Theodore C. Jessop, Paul A. Wender, and Hongjie Dai, "Nanotube Molecular Transporters: Internalization of Carbon Nanotube-Protein Conjugates into Mammalian Cells". J. Am. Chem. Soc., 126, 6850-6851 2004.
83 Jien Cao, Qian Wang, Marco Rolandi, Hongjie Dai, “Aharonov-Bohm interference and beating in single-walled carbon-nanotube interferometers”, Phys. Rev. Lett.,93 216803-1-216803-4 2004
82 Jien Cao, Qian Wang, Dunwei Wang, Hongjie Dai, “Suspended Carbon Nanotube Quantum Wires with Two Gates”, 2005, Small, 1, 138.
81 Pengfei Qi, Ali Javey, Marco Rolandi, Qian Wang, Erhan Yenilmez, Hongjie Dai, “Miniature Organic Transistors with Carbon Nanotubes as Quasi-One-Dimensional Electrodes”, J. Am. Chem. Soc.; (Communication); 2004; 126(38); 11774-11775.
80 Dunwei Wang, Yinglan Chang, Hongjie Dai, “Surface Chemistry and Electrical Properties of Germanium nanowires”, J. Am. Chem. Soc., 126, 11602, (2004).
79 Ali Javey, Pengfei Qi, Qian Wang and Hongjie Dai, “Ten- to 50-nm-long quasi-ballistic carbon nanotube devices obtained without complex lithography”, Proceedings of the National Academy of Sciences of the United States of America (PNAS), 2004, 101, 13408
78 Javey, A; Guo, J; Farmer, DB; Wang, Q; Yenilmez, E; Gordon, RG; Lundstrom, M; Dai, HJ, “Self-aligned ballistic molecular transistors and electrically parallel nanotube arrays”,
Nano Letters, JUL 2004; v.4, no.7, p.1319-1322
77 Nojeh, A; Wong, WK; Baum, AW; Pease, RF; Dai, H, “Scanning electron microscopy of field-emitting individual single-walled carbon nanotubes”, Appl. Phys. Lett., JUL 5 2004; v.85, no.1, p.112-114
76 Dresselhaus, MS; Dai, H, “Carbon nanotubes: Continued innovations and challenges”, MRS BULLETIN; APR 2004; v.29, no.4, p.237-239.
75 Li, YM; Mann, D; Rolandi, M; Kim, W; Ural, A; Hung, S; Javey, A; Cao, J; Wang, DW; Yenilmez, E; et. al., “Preferential growth of semiconducting single-walled carbon nanotubes by a plasma enhanced CVD method”, Nano. Lett.; FEB 2004; v.4, no.2, p.317-321
74 Liu, J; Fan, SS; Dai, HJ, “Recent advances in methods of forming carbon nanotubes”, MRS BULLETIN; APR 2004; v.29, no.4, p.244-250
73 Nojeh, A; Wong, WK; Baum, AW; Pease, RF; Dai, H, “Scanning electron microscopy of field-emitting individual single-walled carbon nanotubes”, Appl. Phys. Lett., 2004; v.85, no.1, p.112-114
72 Javey, A.; Qian Wang; Woong Kim; Hongjie Dai, “Advancements in complementary carbon nanotube field-effect transistors” IEEE International Electron Devices Meeting (IEDM) 2003, 8-10 Dec. 2003, Washington, DC, USA; p.31.2.1-4
71 Peng, S; Cho, KJ; Qi, PF; Dai, HJ, “Ab initio study of CNT NO2 gas sensor”, Chem. Phys. Lett., 2004; v.387, no.4-6, p.271-276
70 Yu-Chih Tseng; Peiqi Xuan; Javey, A.; Malloy, R.; Qiang Wang; Bokor, J.; Hongjie Dai, “Monolithic integration of carbon nanotube devices with silicon MOS technology”, Nano Lett.; Jan. 2004; vol.4, no.1, p.123-7
69 Javey, A; Guo, J; Paulsson, M; Wang, Q; Mann, D; Lundstrom, M; Dai, HJ, “High-field quasiballistic transport in short carbon nanotubes”, Phys. Rev. Lett., 2004; vol.92, no.10, p.106804/1-4
68 Javey, A; Guo, J; Farmer, DB; Wang, Q; Wang, DW; Gordon, RG; Lundstrom, M; Dai, HJ, “Carbon nanotube field-effect transistors with integrated ohmic contacts and high-k gate dielectrics”
Nano. Lett., 2004; v.4, no.3, p.447-450
67 Rolandi, M; Suez, I; Dai, HJ; Frechet, JMJ, “Dendrimer monolayers as negative and positive tone resists for scanning probe lithography” Nano Lett.,; 2004; v.4, no.5, p.889-893
66   Hjortstam, O; Isberg, P; Soderholm, S; Dai, H, “Can we achieve ultra-low resistivity in carbon nanotube-based metal composites?”, Appl. Phys. A., v.78, no.8, p.1175-1179, 2004.
65 Robert J. Chen, Hee Cheul Choi, Sarunya Bangsaruntip, Erhan Yenilmez, Xiaowu Tang, Qian Wang, Ying-Lan Chang, Hongjie Dai, “An Investigation of the Mechanisms of Electronic Sensing of Protein Adsorption on Carbon Nanotube Devices”, J. Am. Chem. Soc., 2004; v.126, no.5, p.1563-1568.
64   Mann, D; Javey, A; Kong, J; Wang, Q; Dai, HJ, Ballistic transport in metallic nanotubes with reliable Pd ohmic contacts, Nano Lett.; NOV 2003; v.3, no.11, p.1541-1544.
63.2 additional article in "News and Views" NATURE VOL 424 7 AUGUST p. 622-623 (2003)
63 Ali Javey, Jing Guo, Qian Wang, Mark Lundstrom and Hongjie Dai, “Ballistic Carbon Nanotube Field Effect Transistors”, Nature, 424, 6949 (2003).
62 Jien Cao, Qian Wang and Hongjie Dai, “Electromechanical Properties of Metallic, Quasi Metallic and Semoconducting Nanotubes Under Tensile Stretching”, Phys. Rev. Lett., v.90, p.157601-157601 (2003).
61 Robert J. Chen, Sarunya Bangsaruntip, Katerina A. Drouvalakis, Nadine W. S. Kam, Moonsub Shim, Yiming Li, Woong Kim, Paul J. Utz and Hongjie Dai, ” Carbon nanotubes as biocompatible materials and highly specific electronic biosensors”, PNAS (Proceeding of the National Academy of Science), v.100, p.4984-4989 (2003).
60 Wang, DW; Wang, Q; Javey, A; Tu, R; Dai, HJ; Kim, H; McIntyre, PC; Krishnamohan, T; Saraswat, KC, “Germanium nanowire field-effect transistors with SiO2 and high-kappa HfO2 gate dielectrics”, Appl. Phys. Lett.; SEP 22 2003; v.83, no.12, p.2432-2434
59 Pengfei Qi, Ophir Vermesh, Mihai Grecu, Ali Javey, Qian Wang, and Hongjie Dai, Shu Peng, K J. Cho, “Towards large arrays of multiplex functionalized carbon nanotube sensors for highly sensitive and selective molecular detection”, Nano Lett., v.3, p.347-351 (2003).
58 Hongjie Dai, "Carbon Nanotubes, From Synthesis to Integration and Properties", Accounts of Chemical Research,35, 1035-1044 (2002). Featured on Cover.
57 Dunwei Wang, Hongjie Dai, “Low-Temperature Synthesis of Single-Crystal Germanium Nanowires by Chemical Vapor Deposition”, Angew. Chem. Int. Ed., 41, 4783-4786, (2002)
56 Woong Kim, Ali Javey, Ophir Vermesh, Qian Wang, Yiming Li, and Hongjie Dai, “Hysteresis Caused by Water Molecules in Carbon Nanotube Field-Effect Transistors”, Nano. Lett., ASAP article, v.3, p.193-198 (2003).
55 Hee Cheul Choi, Summit Kundaria, Dunwei Wang, Ali Ajavey, Qian Wang, Marco Rolandi, and Hongjie Dai, Efficient Formation of Iron Nanoparticle Catalysts on Silicon Oxide by Hydroxylamine for Carbon Nanotube Synthesis and Electronics, Nano Lett., v.3, p.157-161 (2003).
54 Ant Ural, Yiming Li, and Hongjie Dai, “Electric-field-aligned growth of single-walled carbon nanotubes on surfaces”, Appl. Phys. Lett., 81, 3464-3466 (2002)
53.2 additional article in "News and Views" Nature Materials VOL 1 DECEMBER p. 203-204 (2002)
53 Ali Javey, Hyoungsub Kim, Markus Brink, Qian Wang, Ant Ural, Paul McIntyre, Paul McEuen, Hongjie Dai, “High-k Dielectrics For Nanotube Molecular Electronics”, Nature Materials, 1, 241-246, (2002).
52 Fernando Gomez, Robert Chen, Dunwei Wang, Robert Waymouth, Hongjie Dai, “Non-Covalent Sidewall Functionalization of Single-Walled Carbon Nanotubes: Ring Opening Matathesis Polymerization”, Chem. Comm., no.2, p.190-191 (2003).
51 Hee Cheul Choi, Woong Kim, Dunwei Wang, and Hongjie Dai, “Delivery of Catalytic Metal Species onto Surfaces with Dendrimer Carriers for the Synthesis of Carbon Nanotubes with Narrow Diameter Distribution”, J. Phys. Chem., 106, 12361-12365, (2002)
50 Nathan Franklin, Qian Wang, Thomas Tombler, Ali Javey and Hongjie Dai, “Integration of Suspended Carbon Nanotube Arrays Into Electronic Devices and Electromechanical Systems”, Appl. Phys. Lett., 81(5), 913, (2002)
49 Ali Javey, Qian Wang, Ant Ural, Yiming Li and Hongjie Dai, “Carbon Nanotube Transistor Arrays for Multi-Stage Complementary Logic and Ring Oscillators”, Nano Lett., 2, 929-932, (2002)..
48 Hee Cheul Choi, Moonsub Shim, Sarunya Bangsaruntip and Hongjie Dai, “Spontaneous Reduction of Metal Ions on Carbon Nanotube Sidewalls”, J. Am. Chem. Soc., 124, 9058-9059 (2002)..
47 Woong Kim, Hee Cheul Choi, Moonsub Shim, Yiming Li, Dunwei Wang, and Hongjie Dai, “Synthesis of Ultralong and High Percentage of Semiconducting Single-walled Carbon Nanotubes”, Nano Lett., 2 (7), 703-708, (2002).
46 Dai HJ, “Carbon nanotubes: opportunities and challenges”, Sur. Sci, 500(#1-3), 218-241, (2002).
45 Zhang Y, Li Y, Kim W, Wang D, Dai HJ, “Imaging as-grown single-walled carbon nanotubes originated from isolated catalytic nanoparticles.”, Appl. Phys. A., 74(#3), 325-328, (2002).
44 Yenilmez E, Wang Q, Chen RJ, Wang DW, Dai HJ, “Wafer scale production of carbon nanotube scanning probe tips for atomic force microscopy”, Appl. Phys. Lett, 80(#12), 2225-2227, (2002)
43 Shim M, Kam NWS, Chen RJ, Li YM, Dai HJ, “Functionalization of carbon nanotubes for biocompatibility and biomolecular recognition.”, Nano Lett., 2(#4), 285-288, (2002)
42 Marco Rolandi and Hongjie Dai, “A New Approach to Scanning Probe Lithography With a Novel Metal Resist”, Adv. Mater., 4(#3), 191, (2002)
41 Ali Javey, Moonsub Shim and Hongjie Dai, “Electrical Properties and Devices of Large Diameter Single Walled Carbon Nanotubes”, Appl. Phys. Lett., 80(#6), 1064-1066, (2002)
40 Nathan Franklin, Yiming Li, Robert Chen, Ali Javey and Hongjie Dai, “Patterned Growth of Single Walled Carbon Nanotubes on Full 4” Wafers”, Appl. Phys. Lett., 79(#27), 4571-4573 (2001).
39 Moonsub Shim, Ali Javey, Nadine Kam and Hongjie Dai, “Polymer Functionalization for Air-Stable n-type Carbon Nanotube Field Effect Transistors”, J. Am. Chem. Soc., 123(#46), 11512-11513 (2001)
38 Jing Kong, Jien Cao, E. Anderson, Hongjie Dai, “Chemical Profiling of Single Nanotubes: Intramolecular pnp Junctions and On-Tube Single Electron Transistors”, Appl. Phys. Lett., 80(#1), 73-75, (2002)
37 Yuegang Zhang, Aileen Chang, and Hongjie Dai, “Electric Field Directed Growth of Single-Walled Carbon Nanotubes”, Appl. Phys. Lett., 79(#19), 3155-3157, (2001).
36 Robert Chen, Nathan Franklin, Jing Kong, Jien Cao, Thomas Tombler, Yuegang Zhang and Hongjie Dai, “Molecular Photo-desorption from Carbon Nanotubes”, Appl. Phys. Lett., 79(14), 6951 (2001).
35 Yiming Li, Woong Kim, Yuegang Zhang, Marco Rolandi, Dunwei Wang and Hongjie Dai, “Growth of Single Walled Carbon Nanotubes From Discrete Catalytic Nanoparticles of Various Sized”, J. Phys. Chem., 105(#46), 11424-11431, (2001).
34 Robert Chen, Yuegang Zhang, Dunwei Wang and Hongjie Dai, “Non-covalent Sidewall Functionalization of Single-walled Carbon Nanotubes for Protein Immobilization”, J. Am. Chem. Soc., 123(16); 3838-3839 (2001).
33 Jing Kong, Michael Chapline and Hongjie Dai, “Functionalized Single Walled Carbon Nanotubes for Molecular Hydrogen Sensors”, Adv. Mater., 13, 1384-1386 (2001).
32 Hongjie Dai, “Growth and Characterization of Carbon Nanotubes”, book chapter in “Topics in Applied Physics”, Vol. 80, Carbon Nanotubes, Edited by M. Dresselhaus, G. Dresselhaus and P. Avouris, Springer Verlag (2000).
31 Jing Kong, Erhan Yenilmez, Thomas Tombler, Woong Kim, Lei Liu, S. Y. Wu, C. S. Jayanthi, Robert Laughlin, Hongjie Dai, “Quantum Interference and Ballistic Transmission in Nanotube Electron Wave-Guides”, Phys. Rev. Lett., 87, 106801, (2001)
30 Jing Kong and Hongjie Dai, “Full and Partial Chemical Gating of Nanotubes by Organic Amine Compounds”, J. Phys. Chem., 105 (15), 2890 –2893 (2001).
29 Chongwu Zhou, Jing Kong, Erhan Yenilmez and Hongjie Dai, “Modulated Chemical Doping of Individual Carbon Nanotubes”, Science, 290, 1552 (2000).
28 Y. Zhang and Hongjie Dai, “Formation of Metal Nanowires on Carbon Nanotubes”, Appl. Phys. Lett, 77, 3015 (2000).
27 Jing Kong, Chongwu Zhou, Erhan Yenilmez and Hongjie Dai, “Alkaline Metal Doped n-type Nanotubes as Quantum Dots”, Appl. Phys. Lett., 77, 3977 (2000).
26 Y. Gotoh, K. Matsumoto, T. Maeda, E. Cooper, S. Manalis, H. Fang, S. Minne, T. Hunt, Hongjie Dai H, James Harris, and Calvin Quate, “Experimental and theoretical results of room-temperature single-electron transistor formed by the atomic force microscope nano-oxidation process”, J. Vac. Sci. & Tech. A, 18, 1321-1325, (2000)
25 Y. Zhang, Nathan Franklin, Robert Chen and Hongjie Dai, “A Metal Coating Study of Suspended Carbon Nanotubes and Its Implications to Metal-Tube Interactions”, Chem. Phys. Lett., 331, 35-41(2000).
24 Hongjie Dai, “Controlling Nanotube Growth”, Physics World, 13, no 6 June 43-47 (feature article), (2000).
23 Nathan Franklin and Hongjie Dai, “An Enhance Chemical Vapor Deposition Method to Extensive Single-walled Nanotube Networks with Directionality” (featured in cover) Advanced Materials, 12, 890, (2000).
22 Jing Kong, Nathan Franklin, Chongwu Chou, Shu Pan, K. J. Cho and Hongjie Dai, “Nanotube Molecular Wires as Chemical Sensors”, Science, 287, 622 (2000).
21 Hongjie Dai, Book Chapter in “Nanostructured Materials”, in press.
20 Thomas Tombler, Chongwu Zhou, Leo Alexeyev, Jing Kong, Hongjie Dai, W. Liu, C Jayanthi, M. Tang, S. Y. Wu, “Reversible Nanotube Electro-mechanical Characteristics Under Local Probe Manipulation”, Nature, 405, 769 (2000)
19 A. Morpurgo, J. Kong , C. Marcus, H. Dai, “Superconducting proximity effect in single-wall carbon nanotubes”, Physica B , 280(#1-4) 382-383 (2000).
18 Lei Liu, C. S. Jayanthi, Meijie Tang, S. Y. Wu, Thomas W. Tombler, Chongwu Zhou, Leo Alexseyev, Jing Kong, and Hongjie Dai, “Controllable Reversibility of an sp2 to sp3 Transition of a Single Wall Nanotube under the Manipulation of an AFM Tip: A Nanoscale Electromechanical Switch?”, Phys. Rev. Lett., 84, 4950, (2000).
17 Thomas Tombler, Chongwu Zhou, Jing Kong and Hongjie Dai, “Gating Individual Nanotubes and Crosses with Scanning Probes”, Appl. Phys. Lett. , 76, 2412 (2000).
16 Chongwu Zhou, Jing Kong and Hongjie Dai, “Intrinsic Electrical Properties of Single-Walled Nanotubes With Small Band Gaps”, Phys. Rev. Lett., 84, 5604 (2000).
15 Chongwu Zhou, Jing Kong and Hongjie Dai, “Electrical Measurements of Individual Semiconducting Single-Walled Nanotubes of Various Diameters”, Appl. Phys. Lett., 76, 1597 (2000).
14 S. Fan, W. Liang, H. Dang , N. Franklin, T. Tombler, M. Chapline, Hongjie Dai, “Carbon nanotube arrays on silicon substrates and their possible application”, Physica E , 8(#2) 179-183 (2000).
13 Hongjie Dai, et. al., “Controlled Chemical Routes to Nanotube Architectures, Physics and Devices”, J. Phys. Chem. (feature article), 103, 11246-11255, (1999).
12 Jun Li, Alan M. Cassell, Hongjie Dai Carbon nanotubes as AFM tips: measuring DNA molecules at the liquid/solid interface”, Surf. Interf. Anal., 8-11, (1999).
11 E. B. Cooper and S. R. Manalis, H. Fang and H. Dai, K. Matsumoto S. C. Minne, T. Hunt, and C. F. Quate, “Terabit-per-square-inch data storage with the atomic force microscope”, Appl. Phys. Lett. 75, 3566-3568 (1999).
10 Alan Cassell, Nathan Franklin, Emory Chan, Jie Han, Hongjie Dai, “Directed Growth of Free-Standing Single-Walled Carbon Nanotubes”, J. Am. Chem. Soc., 121, 7975-7976 (1999).
9 Alberto Morpurgo, Charles Marcus, Jing Kong and Hongjie Dai, “Gate-Controlled Superconducting Proximity Effect in Carbon Nanotubes”, Science, 286, 263-265 (1999)
8 Jing Kong, Chongwu Zhou, Alberto Morpurgo, Hyonsok Soh, Calvin Quate, Charles Marcus and Hongjie Dai, “Synthesis and Electrical Properties of Individual Single-Walled Carbon Nanotubes”, Appl. Phys. A, 69, 305-308 (1999)
7 Alan Cassell, Jefferey Raymakers, Jing Kong and Hongjie Dai, “Large Scale CVD Synthesis of Single-Walled Carbon Nanotubes”, J. Phys. Chem., 103, 6484-6492, (1999).
6 Hyonsok T. Soh, Alberto Morpurgo, Jing Kong, Charles Marcus, Calvin Quate and Hongjie Dai, “Integrated Nanotube Circuits: Controlled Growth and Ohmic Contacts to Single-Walled Carbon Nanotubes”, Appl. Phys. Lett., 627-629, 75, (1999).
5 J. Han, M. Anantram, R. Jaffe, J. Kong, H. Dai, “Observation and modeling of single-wall carbon nanotube bend junctions”, Phys. Rev. B 57(#23) 14983-14989 (1998)
4 Shoushan Fan, Michael Chapline, Nathan Franklin, Thomas Tombler, A. Cassell and Hongjie Dai, “Self-Oriented Regular Arrays of Carbon Nanotubes and Their Functional Devices”, Science, 283, 512 (1999).
3 Jing Kong, Hyongsok T. Soh, Alan Cassell, Calvin F. Quate and Hongjie Dai, “Synthesis of Individual Single-Walled Carbon Nanotubes on Patterned Silicon Wafers”, Nature, 395, 878 (1998).
2 Hongjie Dai, Nathan Franklin and Jie Han, “Exploiting the Properties of Carbon Nanotube For Nanolithography”, Appl. Phys. Lett., 73, 1508 (1998).
1 J. Kong, A. Cassell and Hongjie Dai, “Chemical Vapor Deposition of Methane for Single-Walled Carbon Nanotubes”, Chem. Phys. Lett., 292, 567 (1998).

 

 


Contact Info

Hongjie Dai

Department of Chemistry

Stanford University

William Keck Science Building rm 125

Stanford, CA 94305-5080

tel. 650 723 4518

fax 650 725 9793

email hdai1@stanford.edu