A Panoramic View on Plastic Waste Recycling and Upcycling: Heterogeneous Catalytic Strategies for Diverse Plastics and Multiple Pathways

C Chang‐Jie Yang (Department of Chemistry Tsinghua University Beijing China) X Xin‐Yu Wang (National Experimental Teaching Demonstration Center for Chemistry College of Chemistry and Chemical Engineering Jishou University Jishou 416000 P.R. China) M Mei‐Qi Zhu (Department of Chemistry Northeastern University Shenyang China) T Tianyou Zhao (Department of Chemistry Northeastern University Shenyang China) Y Yong‐Zhou Pan (Department of Chemistry Northeastern University Shenyang China) Y Yuhai Dou (Institute of Energy Materials Science) J Jiarui Yang (Department of Chemistry) Z Zechao Zhuang (Department of Chemistry) Z Zhenglong Li (State Key Laboratory of Biobased Transportation Fuel Technology, College of Biosystems Engineering and Food Science) Z Zhijun Wu W Wen‐Gang Cui (Institute of Science and Technology for New Energy Xi'an Technological University Xi'an China) H Hongge Pan (Institute of Science and Technology for New Energy) W Wen‐Hao Li (State Key Laboratory of Bioinspired Interfacial Materials Science Institute of Functional Nano & Soft Materials (FUNSOM) Soochow University Suzhou Jiangsu China) D Dingsheng Wang (Department of Chemistry)

Abstract

ABSTRACT Plastics have become integral to modern society due to their low cost, versatility, and practicality. However, their rapid production and limited lifespan have led to the accumulation of vast plastic waste, posing severe threats to public health, the environment, and ecological balance. Heterogeneous catalysis has emerged as a key strategy for the value‐added recycling of plastic waste due to its high efficiency and low separation costs. This review systematically summarizes recent advancements in heterogeneous catalytic strategies for converting waste plastics into high‐value chemicals and functional materials. It provides a detailed classification of commercial plastics and their applications while analyzing key efficiency metrics for plastic upcycling. Various heterogeneous catalytic approaches, including thermal catalysis, photocatalysis, electrocatalysis, photothermal catalysis, photoelectrocatalysis, joule heating, microwave‐assisted catalysis, and ball milling are explored in terms of transformation strategies, resource utilization, and catalytic mechanisms. Additionally, the review examines fundamental reaction pathways, such as C─H bond activation and C─C/C─O bond cleavage. Finally, based on current research and theoretical insights, future directions for heterogeneous catalytic plastic upcycling are discussed, including catalyst development, degradable polymer synthesis, mechanistic investigations, and commercial viability assessments. This review aims to provide new perspectives on addressing plastic pollution through advanced catalytic technologies.

Article Details

Volume / Issue Vol. 38, Issue 35
Published June 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (14)

C

Chang‐Jie Yang

Department of Chemistry Tsinghua University Beijing China

X

Xin‐Yu Wang

National Experimental Teaching Demonstration Center for Chemistry College of Chemistry and Chemical Engineering Jishou University Jishou 416000 P.R. China

M

Mei‐Qi Zhu

Department of Chemistry Northeastern University Shenyang China

T

Tianyou Zhao

Department of Chemistry Northeastern University Shenyang China

Y

Yong‐Zhou Pan

Department of Chemistry Northeastern University Shenyang China

Y

Yuhai Dou

Institute of Energy Materials Science

J

Jiarui Yang

Department of Chemistry

Z

Zechao Zhuang

Department of Chemistry

Z

Zhenglong Li

State Key Laboratory of Biobased Transportation Fuel Technology, College of Biosystems Engineering and Food Science

Z

Zhijun Wu

W

Wen‐Gang Cui

Institute of Science and Technology for New Energy Xi'an Technological University Xi'an China

H

Hongge Pan

Institute of Science and Technology for New Energy

W

Wen‐Hao Li

State Key Laboratory of Bioinspired Interfacial Materials Science Institute of Functional Nano & Soft Materials (FUNSOM) Soochow University Suzhou Jiangsu China

D

Dingsheng Wang

Department of Chemistry