Rational Design of Bio‐Inspired Peptide Electronic Materials toward Bionanotechnology: Strategies and Applications

J Zhao, Q Liu, X Tong, Y Wang… - Advanced Functional …, 2024 - Wiley Online Library
Biologically inspired peptide‐based materials, as novel charge transport materials, have
gained increasing interest in bioelectronics due to their remarkable electrical properties and …

Microstructure Designed Flexoelectric Materials and Tip Force for Multifunctional Applications

S Wang, X Wang, W Tong, X Li, Y Zhang - Nano Energy, 2024 - Elsevier
Flexoelectricity with size-dependent induced polarization under nonuniform stress for high-
efficient energy conversion has shown considerable potential in energy harvesting and …

Research progress of wood and lignocellulose in sustainable piezoelectric systems

X Chen, Q Zhu, B Jiang, D Li, X Song, L Huang… - Nano Energy, 2024 - Elsevier
Wood is the most abundant natural resource in the world. Wood and its derived materials
have the characteristics of low cost, renewable, degradable, non-toxic and excellent …

From water molecule mobility to water-resistance of swollen oriented and non-oriented cellulose nanofibril cryogels

R Charlie, F Loïc, C Laurent, M Jean-Eudes, EM Sana… - Cellulose, 2024 - Springer
The development of porous, water-resistant cellulose-based materials with shape-recovery
performance requires control of the swelling behaviour of these materials. In this context …

[PDF][PDF] A Review of Piezoelectric Phenomena as a Key Characteristic of Wood

ZE Özan, G Gündüz, D Aydemir - 2024 - cdn.techscience.cn
Piezoelectric materials convert mechanical energy into electrical energy, acting as
renewable energy sources. As smart materials, they respond to environmental changes by …

[PDF][PDF] Post-doctoral position 18 months Cellulose Electromechanical Coupling

NU IETR, B Guiffard - ietr.fr
The growing demand for renewable energy with low environmental impact means that we
need to reinvent the way we produce energy, for example by using low-intensity sources that …