Eco-synthesis of green silver nanoparticles using natural extracts and its application as co-catalyst in photocatalytic hydrogen production

被引:3
|
作者
Nguyen, Phuong N. [1 ,2 ]
Tran, Thao Quynh Ngan [3 ]
Le, Khoa Hai [4 ]
Khong, Diem T. [3 ]
Pham, Hoai Phuong [5 ]
Dang, Quang V. [6 ,7 ]
Tran, Quang-Hieu [8 ]
Nguyen, Tuan M. [2 ,9 ]
Dang, Nam Nguyen [10 ,11 ]
机构
[1] Vietnam Acad Sci & Technol VAST, Inst Appl Mat Sci, 29TL St,Dist 12, Ho Chi Minh City, Vietnam
[2] Grad Univ Sci & Technol, Vietnam Acad Sci & Technol, 18 Hoang Quoc Viet St, Hanoi, Vietnam
[3] Ind Univ Ho Chi Minh City, 12 Nguyen Bao,Ward 4, Ho Chi Minh City, Vietnam
[4] Vietnam Acad Sci & Technol VAST, Insitute Trop Technol, 18 Hoang Quoc Viet, Hanoi, Vietnam
[5] Nguyen Tat Thanh Univ, NTT Hi Tech Inst, 298-300A Nguyen Tat Thanh St,Ward 13,Dist 4, Ho Chi Minh City 70000, Vietnam
[6] Univ Sci, Fac Mat Sci & Technol, 227 Nguyen Cu Str,Dist 5, Ho Chi Minh City, Vietnam
[7] Vietnam Natl Univ, Ho Chi Minh VNU HCM, Ho Chi Minh City, Vietnam
[8] Saigon Technol Univ, Basic Sci Dept, 180 Cao Lo,Ward 4,Dist 8, Ho Chi Minh City 700000, Vietnam
[9] Vietnam Acad Sci & Technol VAST, Natl Inst Appl Mech & Informat, 291 Dien Bien Phu St,Ward 7,Dist 3, Ho Chi Minh City 700000, Vietnam
[10] Duy Tan Univ, Inst Fundamental & Appl Sci, Future Mat & Devices Lab, Ho Chi Minh City 70000, Vietnam
[11] Duy Tan Univ, Fac Environm & Chem Engn, Danang 50000, Vietnam
关键词
ANTIOXIDANT; WATER;
D O I
10.1039/d4ra05675b
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Green silver nanoparticles (AgNPs) were synthesized using natural extracts as reducing agents and were firstly applied as co-catalysts in low-intensity-visible-light driven photocatalytic hydrogen production (PH2P), which a solution for green energy sources and independence from fossil fuels. The as-prepared AgNPs possessed size in a few tens nanometers and exhibited surface plasmon resonance (SPR) effects in the 310-560 nm region. Depositing AgNPs on g-C3N4 nanosheets broadened the visible absorption range, reduced electron-hole recombination, and increased electronic communication at the interface. g-C3N4/Ag demonstrated high PH2P efficiency, stability over three consecutive cycles, and a rapidly rising photocurrent under low-intensity visible light irradiation, although these features were not observed in g-C3N4 alone. The H2 evolution of g-C3N4/Ag_CC (CC: Cinnamomum camphora), g-C3N4/Ag_GT (GT: green tea), and g-C3N4/Ag_PP (PP: pomelo peels) reached 252.6, 125.3 and 92.0 mu mol g-1 at 180 min at the first cycle, respectively. Among them, g-C3N4/Ag_CC showed the highest photocatalytic activity, which may be attributed to the superior morphology, optical properties of AgNPs_CC, and efficient electron transfer from g-C3N4 to AgNPs_CC. The SPR effect and Schottky barriers formed at the interface could contribute to enhancing the overall efficiency of the heterojunction photocatalysts. The results highlighted a crucial advancement toward H2 production under low-intensity visible-light irradiation. Applying green AgNPs as co-catalysts in low-intensity-visible-light driven photocatalytic hydrogen production offers a solution for green energy sources and independence from fossil fuels.
引用
收藏
页码:31036 / 31046
页数:11
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