Advances in biodegradable electronic skin: Material progress and recent applications in sensing, robotics, and human–machine interfaces

M Zarei, G Lee, SG Lee, K Cho - Advanced Materials, 2023 - Wiley Online Library
The rapid growth of the electronics industry and proliferation of electronic materials and
telecommunications technologies has led to the release of a massive amount of untreated …

Transparent wood-based functional materials via a top-down approach

S Zhu, SK Biswas, Z Qiu, Y Yue, Q Fu, F Jiang… - Progress in Materials …, 2023 - Elsevier
Transparent wood-based materials (TWMs), made by either bottom-up or top-down
strategies, have attracted great attention owing to their transparency, sustainability and …

Smart fibers for self-powered electronic skins

X Lv, Y Liu, J Yu, Z Li, B Ding - Advanced Fiber Materials, 2023 - Springer
Smart fibers are considered as promising materials for the fabrication of wearable electronic
skins owing to their features such as superior flexibility, light weight, high specific area, and …

Deconstruction and reassembly of renewable polymers and biocolloids into next generation structured materials

BL Tardy, BD Mattos, CG Otoni, M Beaumont… - Chemical …, 2021 - ACS Publications
This review considers the most recent developments in supramolecular and supraparticle
structures obtained from natural, renewable biopolymers as well as their disassembly and …

Biodegradable materials for sustainable health monitoring devices

ES Hosseini, S Dervin, P Ganguly… - ACS applied bio …, 2020 - ACS Publications
The recent advent of biodegradable materials has offered huge opportunity to transform
healthcare technologies by enabling sensors that degrade naturally after use. The …

Designed biomass materials for “green” electronics: A review of materials, fabrications, devices, and perspectives

Z Su, Y Yang, Q Huang, R Chen, W Ge, Z Fang… - Progress in Materials …, 2022 - Elsevier
Abstract “Green” electronics are increasingly in demand to alleviate environmental pollution
caused by electronic wastes. Biomass materials derived from natural resources, such as …

Plant and bacterial nanocellulose: Production, properties and applications in medicine, food, cosmetics, electronics and engineering. A review

JDP de Amorim, KC de Souza, CR Duarte… - Environmental …, 2020 - Springer
Cellulose is the main structural component of plant cell walls. Cellulose is a fibrous, water-
insoluble substance and is considered to be the most abundant bio-derived polymer on …

Wood-derived materials for green electronics, biological devices, and energy applications

H Zhu, W Luo, PN Ciesielski, Z Fang, JY Zhu… - Chemical …, 2016 - ACS Publications
With the arising of global climate change and resource shortage, in recent years, increased
attention has been paid to environmentally friendly materials. Trees are sustainable and …

Wood‐based nanotechnologies toward sustainability

F Jiang, T Li, Y Li, Y Zhang, A Gong, J Dai… - Advanced …, 2018 - Wiley Online Library
With over 30% global land coverage, the forest is one of nature's most generous gifts to
human beings, providing shelters and materials for all living beings. Apart from being …

Flexible electronics based on micro/nanostructured paper

Y Zhang, L Zhang, K Cui, S Ge, X Cheng… - Advanced …, 2018 - Wiley Online Library
Over the past several years, a new surge of interest in paper electronics has arisen due to
the numerous merits of simple micro/nanostructured substrates. Herein, the latest advances …