纳米纤维素
纳米技术
材料科学
计算机科学
生化工程
化学工程
纤维素
工程类
作者
Sujoy Kumar Ghosh,Francesca Matino,Fabio Lineu Favrin,Ilaria Tonazzini,Rosarita D’Orsi,Jose Gustavo De la Ossa,Andrea Camposeo,Jun Li,Wenjian Liu,Timothy A. Hacker,Dario Pisignano,Alessandra Operamolla,Xudong Wang,Luana Persano
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2025-01-15
卷期号:11 (3)
被引量:4
标识
DOI:10.1126/sciadv.ads0778
摘要
While piezoelectric sensing and energy-harvesting devices still largely rely on inorganic components, biocompatible and biodegradable piezoelectric materials, such as cellulose nanocrystals, might constitute optimal and sustainable building blocks for a variety of applications in electronics and transient implants. To this aim, however, effective methods are needed to position cellulose nanocrystals in large and high-performance architectures. Here, we report on scalable assemblies of cellulose nanocrystals in multilayered piezoelectric systems with exceptional response, for various application scopes. The submicrometer patterning with effective-flow topography and multilayer stacking promote piezoelectric performance. Record output power and pressure sensitivity in the gentle touch range are obtained in flexible, fully biodegradable systems with stable piezoelectric properties and demonstrated compatibility with different cell lines and implanted devices. These architectures offer new design principles for piezoelectric sustainable materials and for realizing an innovative class of practical components for mechanical energy harvesting and biologically relevant wearables and implants.
科研通智能强力驱动
Strongly Powered by AbleSci AI