243539 ⎘
Nanotechnology; Nanostructure; Fullerenes, i.e. graphene-based structures, such as nanohorns, nanococoons, nanoscrolls or fullerene-like structures, e.g. WS or MoS chalcogenide nanotubes, planar CN, etc.; Carbon nanotubes, CNTs; Single-walled with specified chirality and/or electrical conductivity
Methods for forming nanotube fabrics with controlled surface roughness and degree of rafting
#2Three-dimensional carbon structures
#3Dispersion solution of semiconductor single-layer carbon nanotube
#4Ratiometric and multiplexed sensors from single chirality carbon nanotubes
#5FILM COMPRISING SINGLE-LAYER CARBON NANOTUBES AND HAVING DENSE PORTIONS AND SPARSE PORTIONS, PROCESS FOR PRODUCING SAME, AND MATERIAL INCLUDING SAID FILM AND PROCESS FOR PRODUCING SAME
#6Methods of making and purifying carbon nanotubes
#7Low porosity nanotube fabric articles
#8Nanomaterial dopant composition composite, dopant composition, and method for manufacturing nanomaterial dopant composition composite
#9Three-dimensional carbon structures
#10Method for growing vertically oriented single-walled carbon nanotubes with the same electronic properties and for reproducing single-walled carbon nanotubes with the same electronic properties
#11Method for producing nanomaterial-dopant composition composite, nanomaterial-dopant composition composite, and dopant composition
#12Modified carbon nanotubes and methods of forming carbon nanotubes
#13Modified carbon nanotubes and methods of forming carbon nanotubes
#14Methods of making and purifying carbon nanotubes
#15Encapsulated thermoacoustic projector based on freestanding carbon nanotube film
#16Film comprising single-layer carbon nanotubes and having dense portions and sparse portions, process for producing same, and material including said film and process for producing same
#17Applying spatial gradient magnetic field to metallic/semiconducting SWNTs in fluid
#18Nanotube film electrode and an electroactive device fabricated with the nanotube film electrode and methods for making same
#19Asymmetric nanotube containing membranes
#20Methods for controlling density, porosity, and/or gap size within nanotube fabric layers and films
#21Asymmetric nanotube containing membranes
#22System and method for low-power nanotube growth using direct resistive heating
#23Nanotube Film Electrode and an Electroactive Device Fabricated with the Nanotube Film Electrode and Methods for Making Same
#24Process for Preparing Conductive Films and Articles Prepared Using the Process
#25Process for Preparing Conductive Films and Articles Prepared Using the Process
#26Asymmetric nanotube containing membranes
#27Carbon nanotube based integrated semiconductor circuit
#28Asymmetric nanotube containing membranes
#29Separating metallic and semiconductor SWNTs with varying dipole-inducing magnetic fields
#30Carbon Nanotube Film Electrode and an Electroactive Device Fabricated with the Carbon Nanotube Film Electrode and a Method for Making Same
#31Carbon nanotube based integrated semiconductor circuit
#32Welding of carbon single-walled nanotubes by microwave treatment
#33Catalyst-supporting carbon nanohorn composite and process for producing same
#34Method for making thin film transistor
#35Process for preparing conductive films and articles prepared using the process
#36Methods for separating carbon nanotubes
#37Epitaxial growth and cloning of a precursor chiral nanotube
#38Methods for separating carbon nanotubes by enhancing the density differential
#39Flow dielectrophoretic separation of single wall carbon nanotubes
#40Welding of carbon single-walled nanotubes by microwave treatment
#41Carbon nanotube based integrated semiconductor circuit
#42Modified carbon nanotubes and methods of forming carbon nanotubes
#43Methods of using thin metal layers to make carbon nanotube films, layers, fabrics, ribbons, elements and articles
#44Intermediate transfer belt and manufacturing method thereof
#45Method for separating carbon nanotubes, method for dispersing carbon nanotubes and compositions used for the methods
#46Method of carbon nanotube separation, dispersion liquid and carbon nanotube obtained by the separation method
#47Bulk separation of carbon nanotubes by bandgap
#48Membranes for nanometer-scale mass fast transport
#49Carbon nanotube structure-selective separation and surface fixation
#50Nanotube based multi-level memory structure
#51Methods for osmylating and ruthenylating single-walled carbon nanotubes
#52Method for producing carbon nanotubes and/or nanofibres
#53Nanotube based multi-level memory structure
#54Process for separating metallic from semiconducting single-walled carbon nanotubes
#55Ropes of single-wall carbon nanotubes
#56Electrical conductors comprising single-wall carbon nanotubes
#57Dispersion of carbon nanotubes by nucleic acids
#58Molecular structures comprising single wall carbon nanotubes
#59Methods for removing polymer coatings from single-walled carbon nanotubes