Mildred S. Dresselhaus
Mildred S. Dresselhaus
Late Professor, MIT
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Cited by
Cited by
Physical properties of carbon nanotubes
G Dresselhaus, MS Dresselhaus, R Saito
World scientific, 1998
Science of fullerenes and carbon nanotubes: their properties and applications
MS Dresselhaus, G Dresselhaus, PC Eklund
Elsevier, 1996
Large area, few-layer graphene films on arbitrary substrates by chemical vapor deposition
A Reina, X Jia, J Ho, D Nezich, H Son, V Bulovic, MS Dresselhaus, ...
Nano letters 9 (1), 30-35, 2009
Raman spectroscopy in graphene
LM Malard, MA Pimenta, G Dresselhaus, MS Dresselhaus
Physics reports 473 (5-6), 51-87, 2009
High-thermoelectric performance of nanostructured bismuth antimony telluride bulk alloys
B Poudel, Q Hao, Y Ma, Y Lan, A Minnich, B Yu, X Yan, D Wang, A Muto, ...
science 320 (5876), 634-638, 2008
Carbon nanotubes
MS Dresselhaus, G Dresselhaus, PC Eklund, AM Rao
The physics of fullerene-based and fullerene-related materials, 331-379, 2000
Raman spectroscopy of carbon nanotubes
MS Dresselhaus, G Dresselhaus, R Saito, A Jorio
Physics reports 409 (2), 47-99, 2005
Effect of quantum-well structures on the thermoelectric figure of merit
LD Hicks, MS Dresselhaus
Physical Review B 47 (19), 12727, 1993
Alternative energy technologies
MS Dresselhaus, IL Thomas
Nature 414 (6861), 332-337, 2001
Edge state in graphene ribbons: Nanometer size effect and edge shape dependence
K Nakada, M Fujita, G Dresselhaus, MS Dresselhaus
Physical Review B 54 (24), 17954, 1996
Studying disorder in graphite-based systems by Raman spectroscopy
MA Pimenta, G Dresselhaus, MS Dresselhaus, LG Cancado, A Jorio, ...
Physical chemistry chemical physics 9 (11), 1276-1290, 2007
New directions for low‐dimensional thermoelectric materials
MS Dresselhaus, G Chen, MY Tang, RG Yang, H Lee, DZ Wang, ZF Ren, ...
Advanced materials 19 (8), 1043-1053, 2007
Electronic structure of chiral graphene tubules
R Saito, M Fujita, G Dresselhaus, MS Dresselhaus
Applied physics letters 60 (18), 2204-2206, 1992
Thermoelectric figure of merit of a one-dimensional conductor
LD Hicks, MS Dresselhaus
Physical review B 47 (24), 16631, 1993
Perspectives on carbon nanotubes and graphene Raman spectroscopy
MS Dresselhaus, A Jorio, M Hofmann, G Dresselhaus, R Saito
Nano letters 10 (3), 751-758, 2010
Intercalation compounds of graphite
MS Dresselhaus, G Dresselhaus
Advances in Physics 30 (2), 139-326, 1981
Diameter-selective Raman scattering from vibrational modes in carbon nanotubes
AM Rao, E Richter, S Bandow, B Chase, PC Eklund, KA Williams, S Fang, ...
Science 275 (5297), 187-191, 1997
Hydrogen storage in single-walled carbon nanotubes at room temperature
C Liu, YY Fan, M Liu, HT Cong, HM Cheng, MS Dresselhaus
Science 286 (5442), 1127-1129, 1999
Bulk nanostructured thermoelectric materials: current research and future prospects
AJ Minnich, MS Dresselhaus, ZF Ren, G Chen
Energy & Environmental Science 2 (5), 466-479, 2009
Structure-based carbon nanotube sorting by sequence-dependent DNA assembly
M Zheng, A Jagota, MS Strano, AP Santos, P Barone, SG Chou, BA Diner, ...
Science 302 (5650), 1545-1548, 2003
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