Electrochemical immunosensors are the largest class of affinity biosensing devices with strong practicability. In recent years, MXenes have become hotspot materials of electrochemical biosensors for their excellent properties, including large specific surface area, good electrical conductivity, high hydrophilicity and rich functional groups. In this review, we firstly introduce the composition and structure of MXenes, as well as their properties relevant to the construction of biosensors. Then, we summarize the recent advances of MXenes-based electrochemical immunosensors, focusing on the roles of MXenes in various electrochemical immunosensors. Finally, we analyze current problems of MXenes-based electrochemical immunosensors and propose a...
The last decade witnessed the emergence of a new family of 2D transition metal carbides and nitrides...
This research delves into the development and optimization of MXene nanosheet-based paper electrodes...
In this work, ultrathin Ti3C2-MXene nanosheets were synthesized by minimally intensive layer delamin...
MXenes, is an attractive new class of two-dimensional (2D) materials, discovered in 2011. Since then...
Over the last few decades, biosensors have made significant advances in detecting non-invasive bioma...
MXene is a two-dimensional (2D) layered material composed of early transition metal carbides, nitrid...
MXenes are a new group of 2D nanomaterials with fascinating properties including high electrical con...
Two-dimensional materials have unique properties and their better functionality has created new para...
MXene-Ti3C2, as a new class of two-dimensional (2D) transition metal carbides (or nitrides), has bee...
Abstract As a new kind of two‐dimensional material, MXene is first discovered in 2011. Because of it...
The combination of 2D MXenes with high affinity aptamers has resulted in the development of innovati...
MXenes are emerging transition metal carbides and nitrides-based 2D conductive materials. They have ...
Two-dimensional MXene nanosheets with vertical junction structure was employed for easy immobilizati...
In this study, an ultra-sensitive electrochemical immunosensor for PSA detection was designed. First...
Electrochemical immunosensors resulting from a combination of the traditional immunoassay approach w...
The last decade witnessed the emergence of a new family of 2D transition metal carbides and nitrides...
This research delves into the development and optimization of MXene nanosheet-based paper electrodes...
In this work, ultrathin Ti3C2-MXene nanosheets were synthesized by minimally intensive layer delamin...
MXenes, is an attractive new class of two-dimensional (2D) materials, discovered in 2011. Since then...
Over the last few decades, biosensors have made significant advances in detecting non-invasive bioma...
MXene is a two-dimensional (2D) layered material composed of early transition metal carbides, nitrid...
MXenes are a new group of 2D nanomaterials with fascinating properties including high electrical con...
Two-dimensional materials have unique properties and their better functionality has created new para...
MXene-Ti3C2, as a new class of two-dimensional (2D) transition metal carbides (or nitrides), has bee...
Abstract As a new kind of two‐dimensional material, MXene is first discovered in 2011. Because of it...
The combination of 2D MXenes with high affinity aptamers has resulted in the development of innovati...
MXenes are emerging transition metal carbides and nitrides-based 2D conductive materials. They have ...
Two-dimensional MXene nanosheets with vertical junction structure was employed for easy immobilizati...
In this study, an ultra-sensitive electrochemical immunosensor for PSA detection was designed. First...
Electrochemical immunosensors resulting from a combination of the traditional immunoassay approach w...
The last decade witnessed the emergence of a new family of 2D transition metal carbides and nitrides...
This research delves into the development and optimization of MXene nanosheet-based paper electrodes...
In this work, ultrathin Ti3C2-MXene nanosheets were synthesized by minimally intensive layer delamin...