TY - JOUR
T1 - Fully Bioabsorbable Natural-Materials-Based Triboelectric Nanogenerators
AU - Jiang, Wen
AU - Li, Hu
AU - Liu, Zhuo
AU - Li, Zhe
AU - Tian, Jingjing
AU - Shi, Bojing
AU - Zou, Yang
AU - Ouyang, Han
AU - Zhao, Chaochao
AU - Zhao, Luming
AU - Sun, Rong
AU - Zheng, Hairong
AU - Fan, Yubo
AU - Wang, Zhong Lin
AU - Li, Zhou
N1 - Publisher Copyright:
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2018/8/9
Y1 - 2018/8/9
N2 - Implantable medical devices provide an effective therapeutic approach for neurological and cardiovascular diseases. With the development of transient electronics, a new power source with biocompatibility, controllability, and bioabsorbability becomes an urgent demand for medical sciences. Here, various fully bioabsorbable natural-materials-based triboelectric nanogenerators (BN-TENGs), in vivo, are developed. The “triboelectric series” of five natural materials is first ranked, it provides a basic knowledge for materials selection and device design of the TENGs and other energy harvesters. Various triboelectric outputs of these natural materials are achieved by a single material and their pairwise combinations. The maximum voltage, current, and power density reach up to 55 V, 0.6 µA, and 21.6 mW m−2, respectively. The modification of silk fibroin encapsulation film makes the operation time of the BN-TENG tunable from days to weeks. After completing its function, the BN-TENG can be fully degraded and resorbed in Sprague–Dawley rats, which avoids a second operation and other side effects. Using the proposed BN-TENG as a voltage source, the beating rates of dysfunctional cardiomyocyte clusters are accelerated and the consistency of cell contraction is improved. This provides a new and valid solution to treat some heart diseases such as bradycardia and arrhythmia.
AB - Implantable medical devices provide an effective therapeutic approach for neurological and cardiovascular diseases. With the development of transient electronics, a new power source with biocompatibility, controllability, and bioabsorbability becomes an urgent demand for medical sciences. Here, various fully bioabsorbable natural-materials-based triboelectric nanogenerators (BN-TENGs), in vivo, are developed. The “triboelectric series” of five natural materials is first ranked, it provides a basic knowledge for materials selection and device design of the TENGs and other energy harvesters. Various triboelectric outputs of these natural materials are achieved by a single material and their pairwise combinations. The maximum voltage, current, and power density reach up to 55 V, 0.6 µA, and 21.6 mW m−2, respectively. The modification of silk fibroin encapsulation film makes the operation time of the BN-TENG tunable from days to weeks. After completing its function, the BN-TENG can be fully degraded and resorbed in Sprague–Dawley rats, which avoids a second operation and other side effects. Using the proposed BN-TENG as a voltage source, the beating rates of dysfunctional cardiomyocyte clusters are accelerated and the consistency of cell contraction is improved. This provides a new and valid solution to treat some heart diseases such as bradycardia and arrhythmia.
KW - bioabsorbable
KW - biodegradable
KW - natural materials
KW - transient electronics
KW - triboelectric nanogenerators
UR - https://www.scopus.com/pages/publications/85051126876
U2 - 10.1002/adma.201801895
DO - 10.1002/adma.201801895
M3 - Article
C2 - 29947102
AN - SCOPUS:85051126876
SN - 0935-9648
VL - 30
JO - Advanced Materials
JF - Advanced Materials
IS - 32
M1 - 1801895
ER -