Novel Mg-(3.5, 6.5wt%)Li-(0.5, 2, 4wt%)Zn ternary alloys were developed as new kinds of biodegradable metallic materials with potential for stent application. Their mechanical properties, degradation behavior, cytocompatibility and hemocompatibility were studied. These potential biomaterials showed higher ultimate tensile strength than previously reported binary Mg-Li alloys and ternary Mg-Li-X (X=Al, Y, Ce, Sc, Mn and Ag) alloys. Among the alloys studied, the Mg-3.5Li-2Zn and Mg-6.5Li-2Zn alloys exhibited comparable corrosion resistance in Hank's solution to pure magnesium and better corrosion resistance in a cell culture medium than pure magnesium. Corrosion products observed on the corroded surface were composed of Mg(OH)2, MgCO3 and Ca-...
Magnesium alloys are widely employed in various applications due to their high strength-to-weight ra...
Metallic Zn alloys have recently gained interest as potential candidates for developing platforms of...
Manganese and zinc were selected as alloying ele- ments to develop a Mg-based ternary alloy for biom...
Novel Mg-(3.5, 6.5wt%)Li-(0.5, 2, 4wt%)Zn ternary alloys were developed as new kinds of biodegradabl...
Mg-Li-based alloys were investigated for future cardiovascular stent application as they possess exc...
Zinc shows great promise as a bioabsorbable metal; however, the low tensile strength of pure zinc li...
The search for biodegradable metals with mechanical properties equal or higher to those of currently...
In this work, binary Zn-0.5Al and ternary Zn-0.5Al-xMg alloys with various Mg contents were investig...
It is still an open challenge to find a biodegradable metallic material exhibiting sufficient mechan...
Magnesium (Mg) based alloys are the most advanced cardiovascular stent materials. This new generatio...
To evaluate biocompatibility of Mg-Zn-Y-Nd alloy as vascular stent material, its influence on cytoto...
Biomaterials have been used for more than a century in the human body to improve body functions and ...
Stress corrosion cracking (SCC) may lead to brittle, unexpected failure of medical devices. However,...
Apart from the industrial and automotive applications, Zn and Zn-based alloys are considered as a ne...
High corrosion kinetics and localised corrosion progress are the primary concerns arising from the c...
Magnesium alloys are widely employed in various applications due to their high strength-to-weight ra...
Metallic Zn alloys have recently gained interest as potential candidates for developing platforms of...
Manganese and zinc were selected as alloying ele- ments to develop a Mg-based ternary alloy for biom...
Novel Mg-(3.5, 6.5wt%)Li-(0.5, 2, 4wt%)Zn ternary alloys were developed as new kinds of biodegradabl...
Mg-Li-based alloys were investigated for future cardiovascular stent application as they possess exc...
Zinc shows great promise as a bioabsorbable metal; however, the low tensile strength of pure zinc li...
The search for biodegradable metals with mechanical properties equal or higher to those of currently...
In this work, binary Zn-0.5Al and ternary Zn-0.5Al-xMg alloys with various Mg contents were investig...
It is still an open challenge to find a biodegradable metallic material exhibiting sufficient mechan...
Magnesium (Mg) based alloys are the most advanced cardiovascular stent materials. This new generatio...
To evaluate biocompatibility of Mg-Zn-Y-Nd alloy as vascular stent material, its influence on cytoto...
Biomaterials have been used for more than a century in the human body to improve body functions and ...
Stress corrosion cracking (SCC) may lead to brittle, unexpected failure of medical devices. However,...
Apart from the industrial and automotive applications, Zn and Zn-based alloys are considered as a ne...
High corrosion kinetics and localised corrosion progress are the primary concerns arising from the c...
Magnesium alloys are widely employed in various applications due to their high strength-to-weight ra...
Metallic Zn alloys have recently gained interest as potential candidates for developing platforms of...
Manganese and zinc were selected as alloying ele- ments to develop a Mg-based ternary alloy for biom...