Bockrath, Marc William
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- Yeh, Nai-Chang and Teague, Marcus L., et el. (2011) Nano-Scale Strain-Induced Giant Pseudo-Magnetic Fields and Charging Effects in CVD-Grown Graphene on Copper; ECS Transactions; Vol. 35; No. 3; 161-172; 10.1149/1.3569908
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- Maune, Hareem T. and Han, Si-ping, et el. (2010) Self-assembly of carbon nanotubes into two-dimensional geometries using DNA origami templates; Nature Nanotechnology; Vol. 5; No. 1; 61-66; 10.1038/nnano.2009.311
- Bockrath, Marc (2009) Show of strength; Nature Nanotechnology; Vol. 4; No. 10; 619-620; 10.1038/nnano.2009.288
- Bockrath, Marc (2009) Nanoelectromechanical systems: Show of strength; Nature Nanotechnology; Vol. 4; No. 10; 618-619; 10.1038/nnano.2009.288
- Bushmaker, Adam W. and Deshpande, Vikram V., et el. (2009) Large Modulations in the Intensity of Raman-Scattered Light from Pristine Carbon Nanotubes; Physical Review Letters; Vol. 103; No. 6; 067401; 10.1103/PhysRevLett.103.067401
- Bushmaker, Adam W. and Deshpande, Vikram V., et el. (2009) Gate Voltage Controllable Non-Equilibrium and Non-Ohmic Behavior in Suspended Carbon Nanotubes; Nano Letters; Vol. 9; No. 8; 2862-2866; 10.1021/nl901042w
- Teague, M. L. and Lai, A. P., et el. (2009) Evidence for Strain-Induced Local Conductance Modulations in Single-Layer Graphene on SiO_2; Nano Letters; Vol. 9; No. 7; 2542-2546; 10.1021/nl9005657
- Bushmaker, Adam W. and Deshpande, Vikram V., et el. (2009) Direct observation of Born-Oppenheimer approximation breakdown in carbon nanotubes; Nano Letters; Vol. 9; No. 2; 607-611; 10.1021/nl802854x
- Deshpande, Vikram V. and Chandra, Bhupesh, et el. (2009) Mott insulating state in ultraclean carbon nanotubes; Science; Vol. 323; No. 5910; 106-110; 10.1126/science.1165799
- Deshpande, Vikram V. and Hsieh, Scott, et el. (2009) Spatially resolved temperature measurements of electrically heated carbon nanotubes; Physical Review Letters; Vol. 102; No. 10; 105501; 10.1103/PhysRevLett.102.105501
- Chiu, Hsin-Ying and Hung, Peter, et el. (2008) Atomic-Scale Mass Sensing Using Carbon Nanotube Resonators; Nano Letters; Vol. 8; No. 12; 4342-4346; 10.1021/nl802181c
- Bishara, Waheb and Refael, Gil, et el. (2008) Sagnac interference in carbon nanotubes; Physical Review B; Vol. 78; No. 16; Art. No. 165405; 10.1103/PhysRevB.78.165405
- Standley, Brian and Bao, Wenzhong, et el. (2008) Graphene-based atomic-scale switches; Nano Letters; Vol. 8; No. 10; 3345-3349; 10.1021/nl801774a
- Bushmaker, Adam W. and Deshpande, Vikram V., et el. (2007) Direct Observation of Mode Selective Electron−Phonon Coupling in Suspended Carbon Nanotubes; Nano Letters; Vol. 7; No. 12; 3618-3622; 10.1021/nl071840f
- Kierk, Isabella and Bockrath, Marc, et el. (2007) Novel nano-biosensors for life science systems and their applications in early, accurate, and non-invasive melanoma and other types of cancer detection; ISBN 978-1-4244-1812-1; 2007 IEEE/NIH Life Science Systems and Applications Workshop; 128-131; 10.1109/LSSA.2007.4400901
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- Maune, Hareem and Bockrath, Marc (2006) Elastomeric carbon nanotube circuits for local strain sensing; Applied Physics Letters; Vol. 89; No. 17; Art. No. 173131; 10.1063/1.2358821
- Maune, Hareem and Chiu, Hsin-Ying, et el. (2006) Thermal resistance of the nanoscale constrictions between carbon nanotubes and solid substrates; Applied Physics Letters; Vol. 89; No. 1; Art. No. 013109; 10.1063/1.2219095
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- Bockrath, Marc (2006) Carbon nanotubes: The weakest link; Nature Physics; Vol. 2; No. 3; 155-156; 10.1038/nphys252
- Chiu, H.-Y. and Deshpande, V. V., et el. (2005) Ballistic Phonon Thermal Transport in Multiwalled Carbon Nanotubes; Physical Review Letters; Vol. 95; No. 22; Art. no. 226101; 10.1103/PhysRevLett.95.226101
- Liang, Wenjie and Bockrath, Marc, et el. (2005) Transport spectroscopy of chemical nanostructures: the case of metallic single-walled carbon nanotubes; Annual Review of Physical Chemistry; Vol. 56; 475-490; 10.1146/annurev.physchem.56.092503.141226
- Heo, Jinseong and Bockrath, Marc (2005) Local Electronic Structure of Single-Walled Carbon Nanotubes from Electrostatic Force Microscopy; Nano Letters; Vol. 5; No. 5; 853-857; 10.1021/nl0501765
- Bockrath, Marc (2003) Condensed-matter physics: Illuminating behaviour; Nature; Vol. 426; No. 6966; 511-512; 10.1038/426511a
- Zhong, Zhaohui and Wang, Deli, et el. (2003) Nanowire Crossbar Arrays as Address Decoders for Integrated Nanosystems; Science; Vol. 302; No. 5649; 1377-1379; 10.1126/science.1090899
- Bozovic, Dolores and Bockrath, M., et el. (2003) Plastic deformations in mechanically strained single-walled carbon nanotubes; Physical Review B; Vol. 67; No. 3; Art. No. 033407; 10.1103/PhysRevB.67.033407
- Liang, Wenjie and Bockrath, Marc, et el. (2002) Shell Filling and Exchange Coupling in Metallic Single-Walled Carbon Nanotubes; Physical Review Letters; Vol. 88; No. 12; Art. No. 126801; 10.1103/PhysRevLett.77.3613
- Lau, C. N. and Markovic, N., et el. (2001) Quantum phase slips in superconducting nanowires; Physical Review Letters; Vol. 87; No. 21; Art. No. 217003; 10.1103/PhysRevLett.87.217003
- Bozovic, Dolores and Bockrath, M., et el. (2001) Electronic properties of mechanically induced kinks in single-walled carbon nanotubes; Applied Physics Letters; Vol. 78; No. 23; 3693-3695; 10.1063/1.1377316
- Bockrath, Marc and Hone, J., et el. (2000) Chemical doping of individual semiconducting carbon-nanotube ropes; Physical Review B; Vol. 61; No. 16; R10606-R10608; 10.1103/PhysRevB.61.R10606
- Cobden, David H. and Bockrath, Marc, et el. (1998) Spin splitting and even-odd effects in carbon nanotubes; Physical Review Letters; Vol. 81; No. 3; 681-684; 10.1103/PhysRevLett.81.681