Calixarene assembly with enhanced photocurrents using P(SNS-NH2)/CdS nanoparticle structure modified Au electrode systems

  • Yazar/lar SAYIN, Serkan
    AZAK, Hacer
    YILDIZ, Hüseyin Bekir
    ÇAMURLU, Pınar
    UYSAL AKKUŞ, Gülderen
    TOPPARE, Lale
    ERSÖZ, Mustafa
  • Yayın Türü Makale
  • Yayın Tarihi 2015
  • DOI Numarası 10.1039/c5cp01932j
  • Yayıncı Royal Society of Chemistry
  • Tek Biçim Adres http://hdl.handle.net/20.500.12498/3085

Two novel calix[n]arene-adorned gold electrodes producing high photocurrent intensities were successfully constructed by embedding gold electrode surfaces with both P(4-(2,5-di(thiophen-2-yl)-1H-pyrrol-1-yl)benzenamine) conducting polymer and 4-mercaptoboronic acid-functionalized semiconductor CdS nanoparticles to facilitate the binding of calix[n]arene sulfonic acids with nanoparticles. This structure enabled an electron transfer cascade that both induced effective charge separation and efficiently generated photocurrent. The prepared electrodes were used to generate photocurrent by relying on the host-guest interactions of guests Br3- and I3-, which if positioned well in the system was able to fill electron-hole pairs of CdS nanoparticles. As a result, host calixarene derivatives crucially held Br3- and I3- ions at a substantial distance from CdS nanoparticles. Furthermore, the effects of various calixarenes on the photocurrent obtained indicate that the generation of photocurrent intensities by the system depends on the cavity sizes of calixarene derivatives, which provide an essential center for Br3- and I3- ions. © the Owner Societies 2015.

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Eser Adı
(dc.title)
Calixarene assembly with enhanced photocurrents using P(SNS-NH2)/CdS nanoparticle structure modified Au electrode systems
Yayın Türü
(dc.type)
Makale
Yazar/lar
(dc.contributor.author)
SAYIN, Serkan
Yazar/lar
(dc.contributor.author)
AZAK, Hacer
Yazar/lar
(dc.contributor.author)
YILDIZ, Hüseyin Bekir
Yazar/lar
(dc.contributor.author)
ÇAMURLU, Pınar
Yazar/lar
(dc.contributor.author)
UYSAL AKKUŞ, Gülderen
Yazar/lar
(dc.contributor.author)
TOPPARE, Lale
Yazar/lar
(dc.contributor.author)
ERSÖZ, Mustafa
DOI Numarası
(dc.identifier.doi)
10.1039/c5cp01932j
Atıf Dizini
(dc.source.database)
Scopus
Yayıncı
(dc.publisher)
Royal Society of Chemistry
Yayın Tarihi
(dc.date.issued)
2015
Kayıt Giriş Tarihi
(dc.date.accessioned)
2020-08-07T12:59:34Z
Açık Erişim tarihi
(dc.date.available)
2020-08-07T12:59:34Z
Kaynak
(dc.source)
Physical Chemistry Chemical Physics
ISSN
(dc.identifier.issn)
14639076 (ISSN)
Özet
(dc.description.abstract)
Two novel calix[n]arene-adorned gold electrodes producing high photocurrent intensities were successfully constructed by embedding gold electrode surfaces with both P(4-(2,5-di(thiophen-2-yl)-1H-pyrrol-1-yl)benzenamine) conducting polymer and 4-mercaptoboronic acid-functionalized semiconductor CdS nanoparticles to facilitate the binding of calix[n]arene sulfonic acids with nanoparticles. This structure enabled an electron transfer cascade that both induced effective charge separation and efficiently generated photocurrent. The prepared electrodes were used to generate photocurrent by relying on the host-guest interactions of guests Br3- and I3-, which if positioned well in the system was able to fill electron-hole pairs of CdS nanoparticles. As a result, host calixarene derivatives crucially held Br3- and I3- ions at a substantial distance from CdS nanoparticles. Furthermore, the effects of various calixarenes on the photocurrent obtained indicate that the generation of photocurrent intensities by the system depends on the cavity sizes of calixarene derivatives, which provide an essential center for Br3- and I3- ions. © the Owner Societies 2015.
Yayın Dili
(dc.language.iso)
en
Tek Biçim Adres
(dc.identifier.uri)
http://hdl.handle.net/20.500.12498/3085
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