Eco-Friendly Coffee Waste-Based Carbon Dots Coupled to ZnBi-Layered Double Hydroxide Heterojunction: Enhanced Control of Interfacial Charge Transfer for Highly Efficient Visible-Light Catalytic Activity

Author:

Thanh Huong Nguyen Thi12,Nha Khanh Dang Nguyen1,Tuong Vy Ngo Thi3,Hai Khoa Le14,The Anh Nguyen5,Bao Tran Dang Vu5,Phuong Thuan Tong Pham5,Khue Tu Le5,Thanh Ha Nguyen5,Ngoc Nghia Nguyen3ORCID,Kim Phuong Nguyen Thi13ORCID

Affiliation:

1. Graduate University of Science and Technology, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay, Hanoi, Vietnam

2. Ton Duc Thang University, Ho Chi Minh City, Vietnam

3. Institute of Applied Materials Science, Vietnam Academy of Science and Technology, 01B Thanh Loc 29, Thanh Loc, District 12, Ho Chi Minh, Vietnam

4. Institute for Tropical Technology, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay, Hanoi, Vietnam

5. Bui Thi Xuan Highschool, Ho Chi Minh City, Vietnam

Abstract

Using a simple, low cost, and excellent efficient approach, carbon dots (CDs) were fabricated via a one-pot hydrothermal process of coffee waste. Amazingly, the combination of 2% CDs with ZnBi2O4 to form a new and excellent heterogeneous photocatalyst enabled the complete decomposition of 2, 4-dichlorophenoxyacetic acid (2, 4-D) into CO2 and H2O. The findings of this study provide a new perspective on the utilization of agricultural waste for creating products of scientific and practical significance. More than 91% of 2, 4-D (initial concentration of 30 mg/L) was completely decomposed and dechlorinated using 1.0 g/L of CDs (2%)-ZnBi2O4 at pH 4.0 after 120 min of exposure to visible light (with k = 0.0178 min−1), and more than 86% of the decomposed 2, 4-D was mineralized into CO2 and H2O. There was no sign of catalyst deactivation after four cycles of reuse, demonstrating the durability and efficiency of CDs (2%)-ZnBi2O4. The significant improvement in the photocatalytic efficiency of CDs (2%)-ZnBi2O4 compared with that of bare CDs or ZnBi2O4 is due to the formation of defects at the interfaces of the heterojunction; therefore, the movement of photogenerated electrons at the interface between the two components is rapid. The mineralization of 2, 4-D by CDs (2%)-ZnBi2O4 upon exposure to visible light is induced mainly by the photogenerated holes, followed by O2•−, and finally OH• radicals.

Funder

Vietnam Academy of Science and Technology

Publisher

Hindawi Limited

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