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SCI-Expanded JCR Q1 Özgün Makale Scopus
Investigation of antibacterial activities of copper based multinary sulfide alloys
Journal of Environmental Chemical Engineering 2024 Cilt 12 Sayı 6
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12
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Özet
One of the nanomaterial-based antimicrobials, CuS, has emerged as a potential active therapeutic agent to combat biofilm infections, showing superior antibacterial activity with both photothermal and photodynamic effects under NIR illumination. To investigate the influence of transition metals on the antibacterial activity of CuxS, the antibacterial properties of shape- and phase- controlled copper-based multinary sulfide (M: CuxS (M: Mn, Zn and Ni)) nanostructures prepared by hot injection method were investigated against Gram-positive Staphylococcus aureus and Gram-negative Escherichia coli under NIR light irradiation. It has been shown that CuxS-based nanomaterials suppress bacterial growth under NIR light irradiation and that, in addition to their antibacterial activity, they also exhibit a remarkable ability to form biofilms. The antibiofilm efficacy of the M:CuxS (M: Mn, Zn and Ni) nanocomposites was significantly higher than that of bare CuS, resulting in biofilm inhibition with rates of 52.53 %, 62.24 % and 74.48 % on E. coli for Mn:CuxS, Zn:CuxS and Ni:CuxS, respectively. In addition, the biofilm of S. aureus was more affected by treatment with M:CuxS (M: Mn, Zn and Ni) nanocomposites, with biofilm activity of 64.15 %, 68.42 % and 87.35 % for Mn:CuxS, Zn:CuxS and Ni:CuxS, respectively. Ni:CuxS showed the highest antibacterial activity, which is attributed to smaller crystal and particle size and energy band gap, resulting in a larger number of nanoparticles per unit volume, a larger surface area and a stronger tendency to electrostatically bind to bacterial cell membranes, a faster ability to penetrate channels and stronger absorption in the NIR range. This work points the way for a broad application of CuS-based biocompatible synergistic antibacterial nanocomposites and can also serve as a guide for antibacterial/antibiofilm approaches as an alternative to conventional antibiotic treatments.
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Belge Türü
Kaynak: JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING
Anahtar Kelimeler (WoS)

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Scimago Dergi Bilgisi Otomatik ISSN Eşleştirmesi 2024 yılı verileri
Journal of Environmental Chemical Engineering
Q1
SJR Quartile
1,454
SJR Skoru
151
H-Index
Kategoriler: Chemical Engineering (miscellaneous) (Q1) · Pollution (Q1) · Process Chemistry and Technology (Q1) · Waste Management and Disposal (Q1)
Alanlar: Chemical Engineering · Environmental Science
Ülke: United Kingdom · Elsevier B.V.
Bu bilgiler makale yılına göre Scimago veritabanından ISSN eşleştirmesiyle otomatik getirilmektedir. Dergi sıralama verileri Scimago'nun ilgili yılı baz alınmaktadır.

Anahtar Kelimeler

WoS | Bir kelimeye tıklayıp ilgili kaynaktaki yayınları görün.

Makale Bilgileri

Dergi Journal of Environmental Chemical Engineering
ISSN 2213-3437
Yıl 2024 / 12. ay
Cilt / Sayı 12 / 6
Makale Türü Özgün Makale
Hakemlik Hakemli
Endeks SCI-Expanded
JCR Quartile Q1
Teşvik Puanı 2,57 · YÖKSİS Akademik Teşvik
Yayın Dili İngilizce
Kapsam Uluslararası
Toplam Yazar 7 kişi
Erişim Türü Basılı+Elektronik
Alan Fen Bilimleri ve Matematik Temel Alanı Kimya Fiziksel Kimya Elektrokimya Nanoteknoloji

YÖKSİS Yazar Kaydı

Yazar Adı Kurt Hacer,AKSOY ÇEKCEOĞLU İLKNUR,Genç Acar Eminegül,ASLAN EMRE,ÖZEL SULTAN SÜLEYMAN,SARILMAZ ADEM,HATAY PATIR İMREN
YÖKSİS ID 8247116

Metrikler

Scopus Atıf 8
Havuz Atıfları 0
JCR Quartile Q1
Teşvik Puanı 2,57
Yazar Sayısı 7