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Electro-optical effects of high aspect ratio P3HT nanofibers colloid in polymer micro-fluid cells

Lobov, Gleb (author)
KTH,Skolan för teknikvetenskap (SCI)
Marinins, Aleksandrs (author)
KTH,Skolan för teknikvetenskap (SCI)
Shafagh, Reza Zandi (author)
KTH,Mikro- och nanosystemteknik
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Zhao, Yichen (author)
KTH,Skolan för teknikvetenskap (SCI)
van der Wijngaart, Wouter (author)
KTH,Mikro- och nanosystemteknik
Wosinski, Lech, 1951- (author)
KTH,Skolan för teknikvetenskap (SCI)
Thylén, Lars (author)
KTH,Skolan för bioteknologi (BIO)
Toprak, Muhammet, 1973- (author)
Haraldsson, Tommy (author)
KTH,Mikro- och nanosystemteknik
Östling, Mikael (author)
KTH,Elektronik och inbyggda system
Popov, Sergei (author)
KTH,Skolan för teknikvetenskap (SCI)
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 (creator_code:org_t)
OSA Publishing, 2017
2017
English.
In: Optics Letters. - : OSA Publishing. - 0146-9592 .- 1539-4794. ; 42:11, s. 2157-2160
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • This Letter reports the electro-optical (EO) effect of Poly(3-hexylthiophene-2,5-diyl) (P3HT) nanofibers colloid in a polymer micro-fluidic EO cell. P3HT nanofibers are high aspect ratio semiconducting nanostructures, and can be collectively aligned by an external alternating electric field. Optical transmission modulated by the electric field is a manifestation of the electro-optical effect due to high inner crystallinity of P3HT nanofibers. According to our results, the degree of alignment reaches a maximum at 0.6 V/μm of electric field strength, implying a big polarizability value due to geometry and electrical properties of P3HT nanofibers. We believe that one-dimensional crystalline organic nanostructures have a large potential in EO devices due to their significant anisotropy, wide variety of properties, low actuation voltages, and opportunity to be tailored via adjustment of the fabrication process.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Nanoteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Nano-technology (hsv//eng)

Keyword

P3HT
Nanofibers
optofluidics
reaction injectin molding
RIM
OSTE
micro-fluid cells

Publication and Content Type

ref (subject category)
art (subject category)

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