Microfluidic paper-based chips (mu PCs) are micro-laboratory analysis systems that use paper instead of traditional microfluidic substrate materials and miniaturize biochemical reactions. Based on traditional 2D mu PCs, the novel mu PCs are innovative 3D structure chips that are realized by fluid channel construction, channel microvalve, folding and other fluid control methods. In recent years, mu PCs have developed rapidly in terms of design and integration and have been widely used in food safety, environmental residue pollution, pathogen detection and other applications. Due to their advantages of low cost, portability and satisfactory thermal stability, they have unique potential in the field of rapid detection. Herein, based on the det...
The development of rapid medical diagnostic and biosensor devices is increasing due to the emergence...
Paper-based sensors are a new alternative technology for fabricating simple, low-cost, portable and ...
Paper has become increasingly recognized as a very interesting substrate for the construction of mic...
Microfluidic paper-based chips (mu PCs) are micro-laboratory analysis systems that use paper instead...
A major application of microfluidic paper-based analytical devices (mu PADs) includes the field of p...
Food safety and quality are paramount concerns for ensuring the preservation of human life and well-...
A wide range of applications are possible with paper-based analytical devices, which are low priced,...
The microfluidic devices based on paper can be served as a new platform applying on various areas in...
Microfluidic devices have shown tremendous promise as miniature lab-on-a-chip platforms that are cap...
We report on the effects of fabrication methods, photolithography, wax printing, screen printing, an...
In vitro diagnosis (IVD) has become a hot topic in laboratory research and achievement transformatio...
A virus is a sub-microscopic infectious organism that causes diseases to humans, animals, and plants...
Since Andreas Manz first introduced the microchip technology for chemical applications back in the 1...
This thesis contributes to the development of Lab-on-a-Chip systems that enables reliable, rapid med...
Microfluidic paper analytical devices (µPADs) are small, paper-based matrices similar to Lab-on-a-Ch...
The development of rapid medical diagnostic and biosensor devices is increasing due to the emergence...
Paper-based sensors are a new alternative technology for fabricating simple, low-cost, portable and ...
Paper has become increasingly recognized as a very interesting substrate for the construction of mic...
Microfluidic paper-based chips (mu PCs) are micro-laboratory analysis systems that use paper instead...
A major application of microfluidic paper-based analytical devices (mu PADs) includes the field of p...
Food safety and quality are paramount concerns for ensuring the preservation of human life and well-...
A wide range of applications are possible with paper-based analytical devices, which are low priced,...
The microfluidic devices based on paper can be served as a new platform applying on various areas in...
Microfluidic devices have shown tremendous promise as miniature lab-on-a-chip platforms that are cap...
We report on the effects of fabrication methods, photolithography, wax printing, screen printing, an...
In vitro diagnosis (IVD) has become a hot topic in laboratory research and achievement transformatio...
A virus is a sub-microscopic infectious organism that causes diseases to humans, animals, and plants...
Since Andreas Manz first introduced the microchip technology for chemical applications back in the 1...
This thesis contributes to the development of Lab-on-a-Chip systems that enables reliable, rapid med...
Microfluidic paper analytical devices (µPADs) are small, paper-based matrices similar to Lab-on-a-Ch...
The development of rapid medical diagnostic and biosensor devices is increasing due to the emergence...
Paper-based sensors are a new alternative technology for fabricating simple, low-cost, portable and ...
Paper has become increasingly recognized as a very interesting substrate for the construction of mic...