Updates on the research and development of absorbable metals for biomedical applications
H Hermawan - Progress in biomaterials, 2018 - Springer
Absorbable metals, metals that corrode in physiological environment, constitute a new class
of biomaterials intended for temporary medical implant applications. The introduction of …
of biomaterials intended for temporary medical implant applications. The introduction of …
Biodegradable shape memory alloys: Progress and prospects
Shape memory alloys (SMAs) have a wide range of potential novel medical applications due
to their superelastic properties and ability to restore and retain a 'memorised'shape …
to their superelastic properties and ability to restore and retain a 'memorised'shape …
Addressing the slow corrosion rate of biodegradable Fe-Mn: Current approaches and future trends
The movement towards the commercialization of biodegradable Fe has been hampered by
the perceived slow degradation rate of the metal in physiological environments. The …
the perceived slow degradation rate of the metal in physiological environments. The …
Advances in Fe-based biodegradable metallic materials
J He, FL He, DW Li, YL Liu, YY Liu, YJ Ye, DC Yin - RSC advances, 2016 - pubs.rsc.org
In recent years, biodegradable metallic materials, such as Mg-, Fe-, Zn-and W-based
materials, have been the focus of many studies. As one of the two most studied types of …
materials, have been the focus of many studies. As one of the two most studied types of …
In vitro and 48 weeks in vivo performances of 3D printed porous Fe-30Mn biodegradable scaffolds
Y Nie, G Chen, H Peng, S Tang, Z Zhou, F Pei, B Shen - Acta biomaterialia, 2021 - Elsevier
Abstract Porous Fe-Mn biodegradable scaffolds fabricated by 3D printing are considered as
a promising alternative biomaterial for repairing load-bearing bone defects. However, the …
a promising alternative biomaterial for repairing load-bearing bone defects. However, the …
Dealloying-based metal-polymer composites for biomedical applications
Here, we developed interpenetrating-phase metal-polymer composites mimicking
mechanical behavior of cortical bone and occupying previously unclaimed region at the …
mechanical behavior of cortical bone and occupying previously unclaimed region at the …
An In Vitro Evaluation of the Hierarchical Micro/Nanoporous Structure of a Ti3Zr2Sn3Mo25Nb Alloy after Surface Dealloying
L Wang, W Zhou, Z Yu, S Yu, L Zhou… - … Applied Materials & …, 2021 - ACS Publications
A process to dealloy a Ti-3Zr-2Sn-3Mo-25Nb (TLM) titanium alloy to create a porous surface
structure has been reported in this paper aiming to enhance the bioactivity of the alloy. A …
structure has been reported in this paper aiming to enhance the bioactivity of the alloy. A …
Surface functionalization of biomedical Ti-6Al-7Nb alloy by liquid metal dealloying
Surface functionalization is an effective approach to change the surface properties of a
material to achieve a specific goal such as improving the biocompatibility of the material …
material to achieve a specific goal such as improving the biocompatibility of the material …
Nanosurface texturing for enhancing the antibacterial effect of biodegradable metal zinc: surface modifications
Zinc (Zn) as a biodegradable metal has attracted research interest for bone reconstruction,
with the aim of eliminating the need for a second removal surgery and minimizing the …
with the aim of eliminating the need for a second removal surgery and minimizing the …
Femtosecond laser-induced nanostructures on Fe-30Mn surfaces for biomedical applications
N Liu, Y Sun, H Wang, C Liang - Optics & Laser Technology, 2021 - Elsevier
FeMn alloy is a promising biodegradable metal due to its high strength and biocompatibility,
but the inadequate degradation rate and poor surface performance impede its further …
but the inadequate degradation rate and poor surface performance impede its further …