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Photocatalytic hydrogen evolution performance of metal ferrites /polypyrrole nanocomposites
International Journal of Hydrogen Energy 2022 Cilt 47
Scopus Eşleşmesi Bulundu
39
Atıf
47
Cilt
32940-32954
Sayfa
Özet
The combination of inorganic (e.g., ferrite nanoparticles) and organic (e.g., conducting polymers) materials in the fabrication of heterojunctions or composites is an attractive scheme in the field of photocatalysis. We took the advantage of this phenomenon by fabricating MFerrite (M = Co, Ni, and Zn) @polypyrrole (MFerrite@Ppy) nanocomposites with a varying weight percentage of Ppy for the hydrogen production through photocatalytic water splitting under visible light irradiation. The structural, spectral, morphological, compositional, and optical features of the as-prepared nanocomposites were analyzed in full depth. The average crystallite sizes were estimated to be 30–40 nm from the XRD patterns which were further validated by TEM images from which a core-shell structure of the composites can be inferred. Likewise, the SEM images revealed spherical Ppy particles with a diameter in the range of 100–300 nm. From a photocatalytic viewpoint, CoFerrite@30Ppy is endowed with some peculiar characteristics including but not limited to strong light-harvesting ability (ranging between 300 and 650 nm), narrow optical band gap (as low as 1.6 eV), and higher photoluminescence (PL) lifetime (6.41 ns) which justify why it stands out among all composites in terms of photocatalysis. Under 8 h illumination of simulated visible light and using triethanolamine (TEOA) as a hole scavenger and Eosin-Y (EY) as a dye sensitizer, the photocatalytic hydrogen evolution (HER) amount for CoFerrite@30Ppy was found to be 10.44 mmol g−1, far greater than any other composite catalysts in this study. From the PL spectra, it can be pointed out that sensitization of CoFerrite with 30 wt % Ppy conduces to simultaneous deceleration of the electron-hole recombination process and acceleration of the transference of excitons within the system.
Web of Science Eşleşmesi Bulundu
38
WoS Atıf
47
Cilt
Article
Belge Türü
Kaynak: INTERNATIONAL JOURNAL OF HYDROGEN ENERGY · s. 32940-32954
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Scimago Dergi Bilgisi Otomatik ISSN Eşleştirmesi 2022 yılı verileri
International Journal of Hydrogen Energy
Q1
SJR Quartile
1,318
SJR Skoru
285
H-Index
Kategoriler: Condensed Matter Physics (Q1) · Energy Engineering and Power Technology (Q1) · Fuel Technology (Q1) · Renewable Energy, Sustainability and the Environment (Q1)
Alanlar: Energy · Physics and Astronomy
Ülke: United Kingdom · Elsevier Ltd
Bu bilgiler makale yılına göre Scimago veritabanından ISSN eşleştirmesiyle otomatik getirilmektedir. Dergi sıralama verileri Scimago'nun ilgili yılı baz alınmaktadır.

Anahtar Kelimeler

YÖKSİS WoS | Bir kelimeye tıklayıp ilgili kaynaktaki yayınları görün.

Makale Bilgileri

Dergi International Journal of Hydrogen Energy
ISSN 0360-3199
Yıl 2022 / 1. ay
Cilt / Sayı 47
Sayfalar 32940 – 32954
Makale Türü Özgün Makale
Hakemlik Hakemli
Endeks SCI-Expanded
JCR Quartile Q2
Teşvik Puanı 1,31 · YÖKSİS Akademik Teşvik
Yayın Dili Türkçe
Kapsam Uluslararası
Toplam Yazar 11 kişi
Erişim Türü Elektronik
Alan Fen Bilimleri ve Matematik Temel Alanı Kimya Enerji Nanoteknoloji Anorganik Kimya Katalizör

YÖKSİS Yazar Kaydı

Yazar Adı Chamani Sanaz, Sadeghi Ebrahim, Peighambardoust Naeimeh Sadat, Doganay Fatmanur, YANALAK GİZEM, ASLAN EMRE, Asghari Elnaz, METİN ÖNDER, HATAY PATIR İMREN, AYDEMİR UMUT, Khatamian Maasoumeh
YÖKSİS ID 6537361

Metrikler

Scopus Atıf 39
Havuz Atıfları 0
JCR Quartile Q2
Teşvik Puanı 1,31
Yazar Sayısı 11