A Novel Coating-Extrusion Method Enabled, High Energy, Power Density, and Scalable Production in Monolithically Integrated Energy Storage Fibers.

 0 Người đánh giá. Xếp hạng trung bình 0

Tác giả: Dongliang Chao, Xiangran Cheng, Jianyou Feng, Xiaocheng Gong, Haibo Jiang, Yi Jiang, Chuanfa Li, Pengzhou Li, Wei Li, Meng Liao, Longmei Ma, Huisheng Peng, Jiahe Qu, Tianbing Song, Chengqiang Tang, Bingjie Wang, Chuang Wang, Zhe Yang, Haixin Yao, Lei Ye, Kun Zhang, Yanfeng Zhang

Ngôn ngữ: eng

Ký hiệu phân loại:

Thông tin xuất bản: Germany : Advanced materials (Deerfield Beach, Fla.) , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 699377

The rise of wearable electronics demands flexible energy storage solutions like flexible fiber energy storage devices (FESDs), known for their flexibility and portability. However, it remains difficult for existing fabrication methods (typically, finite-coating, thermal-drawing, and solution-extrusion) to simultaneously achieve desirable electrochemical performances and fast production of FESDs. Here, a new scalable coating-extrusion method is developed, utilizing a novel extruded spinneret with tapered apertures to create dual pressure zones. These attributes reduced porosity, enhanced electrode materials loading, and stabilized the interface between the fiber electrode and gel electrolyte of FESDs, enabling the integration of three functional electrodes for the fabrication of both fiber LMO-LTP batteries and fiber LMO/LTP-AC hybrid supercapacitor within a single energy storage device. The resultant multifunctional device achieved a high specific capacity of 89.4 mAh g
Tạo bộ sưu tập với mã QR

THƯ VIỆN - TRƯỜNG ĐẠI HỌC CÔNG NGHỆ TP.HCM

ĐT: (028) 36225755 | Email: tt.thuvien@hutech.edu.vn

Copyright @2024 THƯ VIỆN HUTECH