Inks printing is an innovative and practicable technology capable of fabricating the next generation of flexible functional systems with various designs and desired architectures. As a result, inks printing is extremely attractive in the development of printed wearables, including wearable sensors, micro supercapacitor (MSC) electrodes, electromagnetic shielding, and thin-film batteries. The discovery of Ti3C2Tx in 2011, a 2D material known as a MXene, which is a compound composed of layered nitrides, carbides, or carbonitrides of transition metals, has attracted significant interest within the research community because of its exceptional physical and chemical properties. MXene has high metallic conductivity of transition metal carbides co...
Solution processing of two-dimensional nanomaterial inks guarantees efficient, straightforward fabri...
MXene inks are promising candidates for fabricating conductive circuits and flexible devices. Here, ...
Thanks to their electrical, mechanical and optical properties, two-dimensional materials are promisi...
As a thriving member of the 2D nanomaterials family, MXenes, i.e., transition metal carbides, nitrid...
MXenes, a two-dimensional titanium carbide (Ti3C2), are a unique material that exhibits excellent el...
Functional printing is a versatile mass production method that has gained considerable scientific an...
The advent of cost effective printed smart devices has revolutionized the healthcare sector by allow...
The advent of cost effective printed smart devices has revolutionized the healthcare sector by allow...
Formulations of conductive ink compatible with different patterning methods provide essential avenue...
Direct printing of functional inks is critical for applications in diverse areas including elec-troc...
MXene, 2D material, can be synthesized as single flake with 1 nm thickness by using phase change mat...
Printed and flexible electronics is emerging as the next ubiquitous platform for the electronic indu...
The properties of 2D materials are unparalleled when compared to their 3D counterparts; many of thes...
Nowadays, two-dimensional materials have many applications in materials science. As a novel two-dime...
A large family of two-dimensional transition metal carbides and nitrides (MXenes) raises interest fo...
Solution processing of two-dimensional nanomaterial inks guarantees efficient, straightforward fabri...
MXene inks are promising candidates for fabricating conductive circuits and flexible devices. Here, ...
Thanks to their electrical, mechanical and optical properties, two-dimensional materials are promisi...
As a thriving member of the 2D nanomaterials family, MXenes, i.e., transition metal carbides, nitrid...
MXenes, a two-dimensional titanium carbide (Ti3C2), are a unique material that exhibits excellent el...
Functional printing is a versatile mass production method that has gained considerable scientific an...
The advent of cost effective printed smart devices has revolutionized the healthcare sector by allow...
The advent of cost effective printed smart devices has revolutionized the healthcare sector by allow...
Formulations of conductive ink compatible with different patterning methods provide essential avenue...
Direct printing of functional inks is critical for applications in diverse areas including elec-troc...
MXene, 2D material, can be synthesized as single flake with 1 nm thickness by using phase change mat...
Printed and flexible electronics is emerging as the next ubiquitous platform for the electronic indu...
The properties of 2D materials are unparalleled when compared to their 3D counterparts; many of thes...
Nowadays, two-dimensional materials have many applications in materials science. As a novel two-dime...
A large family of two-dimensional transition metal carbides and nitrides (MXenes) raises interest fo...
Solution processing of two-dimensional nanomaterial inks guarantees efficient, straightforward fabri...
MXene inks are promising candidates for fabricating conductive circuits and flexible devices. Here, ...
Thanks to their electrical, mechanical and optical properties, two-dimensional materials are promisi...