Bioelectronic implantable systems (BIS) targeting biomedical and clinical research should combine long-term performance and biointegration in vivo. Here, recent advances in novel encapsulations to protect flexible versions of such systems from the surrounding biological environment are reviewed, focusing on material strategies and synthesis techniques. Considerable effort is put on thin-film encapsulation (TFE), and specifically organic-inorganic multilayer architectures as a flexible and conformal alternative to conventional rigid cans. TFE is in direct contact with the biological medium and thus must exhibit not only biocompatibility, inertness, and hermeticity but also mechanical robustness, conformability, and compatibility with the man...
Electronic components in the form of application-specific integrated circuits (ASICs) establishing t...
© 2021 American Chemical Society.Contemporary implantable bioelectronic devices are typically made o...
Polymer materials attract more and more interests for a biocompatible package of novel implantable m...
The main goal of bioelectronic medicine is to, one day, replace conventional chemical drugs with min...
Electronic components in the form of application-specific integrated circuits (ASICs) establishing t...
Recent advances in materials, mechanics design and microfabrication technologies are beginning to es...
At the convergence of organic electronics and biology, organic bioelectronics attracts great scienti...
A novel biocompatible packaging process for implantable electronic systems is described, combining e...
Flexible and stretchable electronics and optoelectronics configured in soft, water resistant formats...
The rapid development of micro/nanofabrication technologies to engineer a variety of materials has e...
Flexible and stretchable electronics and optoelectronics confi gured in soft, water resistant format...
Implantable and direct contact electronic devices for underpinning complex tissue functions as well ...
The encapsulation of electronic systems to be implanted in the human body has to ensure a hermetic s...
Current state-of-the-art implantable micron feature electronic devices are capable of monitoring and...
Liquid crystal polymer (LCP) has gained wide interest in the electronics industry largely due to its...
Electronic components in the form of application-specific integrated circuits (ASICs) establishing t...
© 2021 American Chemical Society.Contemporary implantable bioelectronic devices are typically made o...
Polymer materials attract more and more interests for a biocompatible package of novel implantable m...
The main goal of bioelectronic medicine is to, one day, replace conventional chemical drugs with min...
Electronic components in the form of application-specific integrated circuits (ASICs) establishing t...
Recent advances in materials, mechanics design and microfabrication technologies are beginning to es...
At the convergence of organic electronics and biology, organic bioelectronics attracts great scienti...
A novel biocompatible packaging process for implantable electronic systems is described, combining e...
Flexible and stretchable electronics and optoelectronics configured in soft, water resistant formats...
The rapid development of micro/nanofabrication technologies to engineer a variety of materials has e...
Flexible and stretchable electronics and optoelectronics confi gured in soft, water resistant format...
Implantable and direct contact electronic devices for underpinning complex tissue functions as well ...
The encapsulation of electronic systems to be implanted in the human body has to ensure a hermetic s...
Current state-of-the-art implantable micron feature electronic devices are capable of monitoring and...
Liquid crystal polymer (LCP) has gained wide interest in the electronics industry largely due to its...
Electronic components in the form of application-specific integrated circuits (ASICs) establishing t...
© 2021 American Chemical Society.Contemporary implantable bioelectronic devices are typically made o...
Polymer materials attract more and more interests for a biocompatible package of novel implantable m...