Javascript must be enabled to continue!
In Situ Growth Intercalation Structure MXene@Anatase/Rutile TiO2 Ternary Heterojunction with Excellent Phosphoprotein Detection in Sweat
View through CrossRef
Abnormal protein phosphorylation may relate to diseases such as Alzheimer’s, schizophrenia, and Parkinson’s. Therefore, the real-time detection of phosphoproteins in sweat was of great significance for the early knowledge, detection, and treatment of neurological diseases. In this work, anatase/rutile TiO2 was in situ grown on the MXene surface to constructing the intercalation structure MXene@anatase/rutile TiO2 ternary heterostructure as a sensing platform for detecting phosphoprotein in sweat. Here, the intercalation structure of MXene acted as electron and diffusion channels for phosphoproteins. The in situ grown anatase/rutile TiO2 with n-n-type heterostructure provided specific adsorption sites for the phosphoproteins. The determination of phosphoprotein covered concentrations in sweat, with linear range from 0.01 to 1 mg/mL, along with a low LOD of 1.52 μM. It is worth noting that, since the macromolecular phosphoprotein was adsorbed on the surface of the material, the electrochemical signal gradually decreased with the increase of phosphoprotein concentration. In addition, the active sites in the MXene@anatase/rutile TiO2 ternary heterojunction and synergistic effect of the heterojunction were verified by first-principle calculations to further realize the response to phosphoproteins. Additionally, the effective diffusion capacity and mobility of phosphoprotein molecules in the ternary heterojunction structure were studied by molecular dynamics simulation. Furthermore, the constructed sensing platform showed high selectivity, repeatability, reproducibility, and stability, and this newly developed sensor can detect for phosphoprotein in actual sweat samples. This satisfactory sensing strategy could be promoted to realize the noninvasive and continuous detection of sweat.
Title: In Situ Growth Intercalation Structure MXene@Anatase/Rutile TiO2 Ternary Heterojunction with Excellent Phosphoprotein Detection in Sweat
Description:
Abnormal protein phosphorylation may relate to diseases such as Alzheimer’s, schizophrenia, and Parkinson’s.
Therefore, the real-time detection of phosphoproteins in sweat was of great significance for the early knowledge, detection, and treatment of neurological diseases.
In this work, anatase/rutile TiO2 was in situ grown on the MXene surface to constructing the intercalation structure MXene@anatase/rutile TiO2 ternary heterostructure as a sensing platform for detecting phosphoprotein in sweat.
Here, the intercalation structure of MXene acted as electron and diffusion channels for phosphoproteins.
The in situ grown anatase/rutile TiO2 with n-n-type heterostructure provided specific adsorption sites for the phosphoproteins.
The determination of phosphoprotein covered concentrations in sweat, with linear range from 0.
01 to 1 mg/mL, along with a low LOD of 1.
52 μM.
It is worth noting that, since the macromolecular phosphoprotein was adsorbed on the surface of the material, the electrochemical signal gradually decreased with the increase of phosphoprotein concentration.
In addition, the active sites in the MXene@anatase/rutile TiO2 ternary heterojunction and synergistic effect of the heterojunction were verified by first-principle calculations to further realize the response to phosphoproteins.
Additionally, the effective diffusion capacity and mobility of phosphoprotein molecules in the ternary heterojunction structure were studied by molecular dynamics simulation.
Furthermore, the constructed sensing platform showed high selectivity, repeatability, reproducibility, and stability, and this newly developed sensor can detect for phosphoprotein in actual sweat samples.
This satisfactory sensing strategy could be promoted to realize the noninvasive and continuous detection of sweat.
Related Results
TiO2-based heterostructure photocatalysts for enhanced hydrogen production
TiO2-based heterostructure photocatalysts for enhanced hydrogen production
The photocatalytic production of hydrogen from water and biomass derivatives such as ethanol, glycerol and sugars is a highly attractive strategy to generate environmentally benign...
(Invited) Carbon Nanotube-Based Fabric Sensor for Selective Sodium Detection in Sweat
(Invited) Carbon Nanotube-Based Fabric Sensor for Selective Sodium Detection in Sweat
Despite the recent advancements in sensor detection of biomarkers in sweat, there is no sensor capable of long-term detection in constricted or load-bearing applications where othe...
Wearable Fabric Sensor Using Functionalized MWCNT Nanocomposite Material
Wearable Fabric Sensor Using Functionalized MWCNT Nanocomposite Material
Despite the recent advancements in sensor detection of biomarkers in sweat, there is no sensor capable of long-term detection in constricted or load-bearing applications where othe...
(Invited) Wearable Flexible Microfluidic Biosensor for Sweat Monitoring
(Invited) Wearable Flexible Microfluidic Biosensor for Sweat Monitoring
As we enter the post-pandemic era, our lives have certainly become more convenient than before, due to the advancement and elimination of technologies that became practical or wide...
Rutile from the Barberton Greenstone Belt – A petrogenetic indicator for Archean rocks?
Rutile from the Barberton Greenstone Belt – A petrogenetic indicator for Archean rocks?
The Barberton Greenstone Belt (BGB) is one of the best-preserved Paleo- to Mesoarchean crustal domains on Earth. Metapelites within the southern BGB are one of the few known occurr...
Interfacial Analysis of Anatase TiO2 in
KOH Solution by Molecular Dynamics Simulations and Photoelectrochemical
Experiments
Interfacial Analysis of Anatase TiO2 in
KOH Solution by Molecular Dynamics Simulations and Photoelectrochemical
Experiments
Abstract
Hydrogen can be produced by photoelectrochemical (PEC) water splitting using a KOH solution as an electrolyte and TiO2 as a photoanode. In this work, we ...
Estimation of the Number of Active Sweat Glands Through Discrete Sweat Sensing
Estimation of the Number of Active Sweat Glands Through Discrete Sweat Sensing
Sweat is a biomarker-rich fluid with potential for continuous patient monitoring via wearable devices. However, biomarker concentrations vary with the sweat rate per gland, posing ...
Role of surface termination in charge storage mechanism of 2D metal carbide
Role of surface termination in charge storage mechanism of 2D metal carbide
Rôle de la terminaison de surface dans le mécanisme de stockage de charge du carbure métallique 2D
L'objectif principal de la thèse était de synthétiser et d'effect...

