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Environmental Science & Technology
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May 15, 2013
Colloidal properties and stability of graphene oxide nanomaterials in the aquatic environment
Indranil Chowdhury, Matthew C Duch, Nikhita D Mansukhani, et al.
Environmental Science & Technology
|
July 16, 2014
Interactions of graphene oxide nanomaterials with natural organic matter and metal oxide surfaces
Indranil Chowdhury, Matthew C Duch, Nikhita D Mansukhani, et al.
Environmental Science & Technology
|
January 2, 2014
Response to comment on "Colloidal properties and stability of graphene oxide nanomaterials in the aquatic environment"
Indranil Chowdhury, Matthew C Duch, Nikhita D Mansukhani, et al.
Clinical Psychology Review
|
November 25, 2021
Differentiation of self: A scoping review of Bowen Family Systems Theory's core construct
M Calatrava, Mariana V Martins, M Schweer-Collins, et al.
Methods in Molecular Biology (Clifton, N.J.)
|
April 25, 2012
Measuring single-wall carbon nanotubes with solid-state nanopores
Adam R Hall, Johannes M Keegstra, Matthew C Duch, et al.
Nano Letters
|
May 18, 2011
Translocation of single-wall carbon nanotubes through solid-state nanopores
Adam R Hall, Johannes M Keegstra, Matthew C Duch, et al.
Environmental Science & Technology
|
September 29, 2012
Impact of synthesis methods on the transport of single walled carbon nanotubes in the aquatic environment
Indranil Chowdhury, Mathew C Duch, Colton C Gits, et al.
Nano Letters
|
October 26, 2011
Minimizing oxidation and stable nanoscale dispersion improves the biocompatibility of graphene in the lung
Matthew C Duch, G R Scott Budinger, Yu Teng Liang, et al.
ACS Nano
|
September 17, 2014
Graphene oxide enhances cellular delivery of hydrophilic small molecules by co-incubation
Andy H Hung, Robert J Holbrook, Matthew W Rotz, et al.
The Journal of Physical Chemistry. C, Nanomaterials and Interfaces
|
December 4, 2013
Mechanisms of Gadographene-Mediated Proton Spin Relaxation
Andy H Hung, Matthew C Duch, Giacomo Parigi, et al.
Page
of 4
Search research articles
Search
Showing results (21-30 of 32) with videos related to
Sort By:
Page
of 4
Environmental Science & Technology
|
May 15, 2013
Colloidal properties and stability of graphene oxide nanomaterials in the aquatic environment
Indranil Chowdhury, Matthew C Duch, Nikhita D Mansukhani, et al.
Environmental Science & Technology
|
July 16, 2014
Interactions of graphene oxide nanomaterials with natural organic matter and metal oxide surfaces
Indranil Chowdhury, Matthew C Duch, Nikhita D Mansukhani, et al.
Environmental Science & Technology
|
January 2, 2014
Response to comment on "Colloidal properties and stability of graphene oxide nanomaterials in the aquatic environment"
Indranil Chowdhury, Matthew C Duch, Nikhita D Mansukhani, et al.
Clinical Psychology Review
|
November 25, 2021
Differentiation of self: A scoping review of Bowen Family Systems Theory's core construct
M Calatrava, Mariana V Martins, M Schweer-Collins, et al.
Methods in Molecular Biology (Clifton, N.J.)
|
April 25, 2012
Measuring single-wall carbon nanotubes with solid-state nanopores
Adam R Hall, Johannes M Keegstra, Matthew C Duch, et al.
Nano Letters
|
May 18, 2011
Translocation of single-wall carbon nanotubes through solid-state nanopores
Adam R Hall, Johannes M Keegstra, Matthew C Duch, et al.
Environmental Science & Technology
|
September 29, 2012
Impact of synthesis methods on the transport of single walled carbon nanotubes in the aquatic environment
Indranil Chowdhury, Mathew C Duch, Colton C Gits, et al.
Nano Letters
|
October 26, 2011
Minimizing oxidation and stable nanoscale dispersion improves the biocompatibility of graphene in the lung
Matthew C Duch, G R Scott Budinger, Yu Teng Liang, et al.
ACS Nano
|
September 17, 2014
Graphene oxide enhances cellular delivery of hydrophilic small molecules by co-incubation
Andy H Hung, Robert J Holbrook, Matthew W Rotz, et al.
The Journal of Physical Chemistry. C, Nanomaterials and Interfaces
|
December 4, 2013
Mechanisms of Gadographene-Mediated Proton Spin Relaxation
Andy H Hung, Matthew C Duch, Giacomo Parigi, et al.
Page
of 4