دورية أكاديمية

Enhanced Catalytic Performance of Ag NP/0.95AgNbO3-0.05LiTaO3 Heterojunction from the Combination of Surface Plasma Resonance Effect and Piezoelectric Effect Using Facile Mechanical Milling

التفاصيل البيبلوغرافية
العنوان: Enhanced Catalytic Performance of Ag NP/0.95AgNbO3-0.05LiTaO3 Heterojunction from the Combination of Surface Plasma Resonance Effect and Piezoelectric Effect Using Facile Mechanical Milling
المؤلفون: Tianxiang Ren, Tufeng He, Zhenzhu Cao, Pengyue Xing, Xinglong Teng, Guorong Li
المصدر: Nanomaterials, Vol 13, Iss 22, p 2972 (2023)
بيانات النشر: MDPI AG, 2023.
سنة النشر: 2023
المجموعة: LCC:Chemistry
مصطلحات موضوعية: SPR effect, piezoelectric effect, photocatalysis, visible light, decomposition, Chemistry, QD1-999
الوصف: An internal built electric field can suppress the recombination of electron–hole pairs and distinctly enhance the catalytic activity of a photocatalyst. Novel t-Ag/0.95AgNbO3-0.05LiTaO3 heterojunction was prepared by reducing silver nanoparticles (Ag NPs) on the surface of the piezoelectric powder 0.95AgNbO3-0.05LiTaO3 (0.05-ANLT) using a simple mechanical milling method. The effects of milling time and excitation source used for the degradation of organic dye by heterojunction catalysts were investigated. The results demonstrate that the optimized 1.5-Ag/0.05-ANLT heterojunction removes 97% RhB within 40 min, which is 7.8 times higher than that of single piezoelectric catalysis and 25.4 times higher than that of single photocatalysis. The significant enhancement of photocatalytic activity can be attributed to the synergistic coupling of the surface plasmon resonance (SPR) effect and the piezoelectric effect.
نوع الوثيقة: article
وصف الملف: electronic resource
اللغة: English
تدمد: 2079-4991
العلاقة: https://www.mdpi.com/2079-4991/13/22/2972Test; https://doaj.org/toc/2079-4991Test
DOI: 10.3390/nano13222972
الوصول الحر: https://doaj.org/article/a1e13ea6aaa64c73acf83e8f4eabadceTest
رقم الانضمام: edsdoj.1e13ea6aaa64c73acf83e8f4eabadce
قاعدة البيانات: Directory of Open Access Journals
الوصف
تدمد:20794991
DOI:10.3390/nano13222972