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anotechnology in Textiles, Textiles
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Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles
anotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles
anotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles
anotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles
anotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles
anotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles
anotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles
anotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles, Nanotechnology in Textiles, Textiles
Nanotechnology, Nanotechnology, Textiles, Fabrics, Nanofashion, Nanotechnology,
Textiles, Nanotechnology in Textiles, Textiles, Nanotextiles
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Welcome
to the Textiles
Nanotechnology Laboratory
Our research group aims
at understanding complex
phenomena at the
nanoscale that are of
fundamental relevance to
fiber, textiles and polymer
science.
Our research work
can be categorized into
three main thrusts:

Transmission Electron
Microscopy TEM images of
cotton fibers coated
with gold (L) and
palladium (R) nanoparticles. Potential
applications include
catalytic mantles,
structural coloration
(color without dyes) and
antibacterial flexible
substrates
1.
Modification and
enhancement of existing
textile materials using
electrostatic
self-assembly and atomic
layer deposition
techniques to create
novel, multifunctional
and customizable
surfaces on conventional
textile substrates.
Our group has deposited
polyelectrolytes,
inorganic and metallic
nanolayers as well as a
myriad of nanoparticles,
catalytic moieties and
non-spherical colloids
over textile fibers with
nanoscale precision
opening a new avenue for
the development of smart
textiles.

TEM and FESEM images of
nylon nanofibers coated
with gold (L)
nanoparticles and
anomalous crystal
formations of NaCl
(R) . Potential
applications include
active and catalytic
filtration of hazardous
gases and industrial
toxic chemicals as well
as anti-counterfeiting
devices.
2.
Nanomanufacturing of
polymeric nanofibers
using directed assembly
techniques as well as
external fields to
create novel fibers with
unique catalytic,
magnetic and electrical
properties. We
use magnetic and
electric fields to
achieve precise position
control of functional
nanoparticles inside and
outside polymeric fibers
hence creating novel
nanocomposite materials. Some
of these nanofibers have
applications in
anti-counterfeiting,
antibacterial, anti-odor
and self-decontaminating
applications.
Additional properties of
these nanofibers include
tunable coloration and
control of near infrared
signatures for active
camouflage applications.

Acoustic Force Atomic
Microscopy image of a
conjugated fiber
(Islands on the Sea)
containing 1120
nanofibers of polyester
in a sea of polyethylene
(L). Electrostatic
Force Microscopy of a nanofiber nonwoven web
used in electret
filtration media (R)
3.
Development of metrology
tools based on scanning
probe microscopy
customized to assess
nanoscale phenomena on
low energy surfaces with
high radius of curvature
such as those of textile
fibers.
Our group is pioneering
the use of electric
force microscopy as a
probing tool to
quantitatively determine
the effect of electrical
charge degradation on
the filtration
performance of electret
filter media. We
also use a novel Atomic
Force Acoustic
Microscopy AFAM
technique to probe the
mechanical properties of
nanofibers as well
conjugated fibers
(Islands on the Sea)
produced via bicomponent
extrusion.
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Textiles Nanotechnology Laboratory
Prof. Juan P Hinestroza
Cornell University
242 Martha Van Rensselaer Hall
Ithaca, NY 14853 USA
Tel: 607 255 7600 Fax 607 255 1093
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7/08 |
The Textiles
Nanotechnology Laboratory is moving all
our research operations to the Langmuir Laboratories.
Langmuir Labs are located at the
Cornell Business and
Technology Park. |
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7/08 |
Dr. Huaning Zhu
joins our group as a Postdoctoral Associate. Dr. Zhu, a graduate
from Peking and
Tulane Universities, comes
from NIST and he will work on
modeling the flow of nanoparticles through nanochannels of
electret and monolithic filter media. Anna Paola Soliani also joins our group
as a MSc-Ph.D Student. Anna is a a graduate from
Clarkson University |
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6/08 |
Joseph Carlos
Becerril joins our group as a CCMR REU. Joseph will work on
Acoustic Force Microscopy Measurements. Joseph is an
undergraduate student at
University of Texas San Antonio |
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5/08 |
Professor Hinestroza is a member of two teams that secured more
than $2.2 million from the U.S. Department of Defense to develop
advanced fibers and filtration systems potentially capable of
rendering toxic materials harmless. Both grants are
multi-university collaborative efforts (UCLA
and NCSU ) funded
through the U.S. Defense Threat
Reduction Agency. |
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5/08 |
Karmann defends her MS thesis
entitled: "Enabling the production of poly (etherimide)
nanofibers using bad solvents" |
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5/08 |
Dr. Alba Avila, a graduate of
Cambridge University and faculty member at
Universidad de los Andes
joins our lab as a visiting scholar. Dr. Avila will work on the
probing polymer electrets using electrostatic force microscopy |
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5/08 |
Professor Hinestroza
delivers invited talks regarding our work on nanotechnoloy in
textiles at Seoul National
University, University of
Incheon, Catholic
University of Korea and
Hong Kong Polytechnic University |
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4/08 |
Professor Hinestroza
is an invited speaker at the
DoD organized 6th
Nanomaterials for Defense Conference in Arlington, VA.
Professor Hinestroza spoke during the Nanoscience for Autonomous
Responsive Surfaces Session. |
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4/08 |
Professor Hinestroza
and
Professor Netravali organize a symposium on Cellulose based
and other green composites during the
ACS Meeting in New
Orleans, LA |
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4/08 |
Vivian, Naomi and
Juan presented their research work during the annual meeting of
the American Chemical Society
in New Orleans, LA. Vivian also presented her work on
fiber lubrication in the ACS Sci-Mix
Session in Second Life. |
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4/08 |
Professor Hinestroza
was an invited speaker at TechTextil North America in during
their Symposium on Multifunctional Textiles for Military
Applications. Hinestroza spoke about our work on nanotechnology
in textiles and its potential in the development of novel chem-bio
protection systems |
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3/08 |
Hekia Bodwitch was
awarded a summer research fellowship from the Cornell
College of Human Ecology
and Rafael Uribe will continue his research work in the summer
as an NSF-REU |
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3/08 |
Professor Hinestroza
is an invited speaker at the Department of Chemical and
Biomolecular Engineering at the
University of Pittsburgh and the Department of Chemistry at
the SUNY College in Oneanta,
NY |
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3/08 |
Hinestroza was an
invited speaker at the Rhode
Island School of Design in Providence, RI where he spoke on
the use of nanotechnology in textiles. |
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2/08 |
Professor Hinestroza speaks at
Iowa State University
in a joint seminar, Chemical and Biomolecular Engineering
and Materials Science and
Engineering departments,
on Multifunctional Fibers via Manipulation of Nanoscale
Phenomena |
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2/08 |
A team composed of
Professors Jasper
and
Kutznesov from NCSU
and Hinestroza (Cornell) was awarded a $772K research grant from
the Defense Threat Reduction
Agency to Model the Flow of Nanoparticles through
Electrostatically Charged Monolith Filters |
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2/08 |
The Textiles Nanotechnology Laboratory opens in
Second Life!! We are
located in the Virtual Island of the
American Chemical Society. Come and visit us at
http://slurl.com/secondlife/ACS/177/135/31 |
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2/08 |
Professor Hinestroza
is an invited speaker at
Clemson University
School of Materials Science and Engineering |
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1/08 |
Naomi Birbach and
Rena Dong received First Place in the
5th CCMR Microscopy Competition.
Naomi won with the best
image in the SEM category and
Rena in the FESEM/TEM category. |
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1/08 |
Professor Hinestroza
is an invited speaker at the
University of Michigan
College of Pharmacy in
Ann Arbor, MI |
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More News...... |
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