A major application of microfluidic paper-based analytical devices (µPADs) includes the field of point-of-care (POC) diagnostics. It is important for POC diagnostics to possess properties such as ease-of-use and low cost. However, µPADs need multiple instruments and fabrication steps. In this study, two different chemicals (Hexamethyldisilazane and Tetra-ethylorthosilicate) were used, and three different methods (heating, plasma treatment, and microwave irradiation) were compared to develop µPADs. Additionally, an inkjet-printing technique was used for generating a hydrophilic channel and printing certain chemical agents on different regions of a modified filter paper. A rapid and effective fabrication method to develop µPADs within 10 min ...
Simple, user-friendly, economical and rapid sensing devices are in urgent demand for diagnostics pur...
This chapter will provide an overview of existing diagnostic devices made primarily out of paper and...
Paper (and other cellulose-based materials such as cotton thread and fabrics) are underexploited as ...
A major application of microfluidic paper-based analytical devices (mu PADs) includes the field of p...
Microfluidic paper-based analytical devices (microPADs) began as a simple idea with an ambitious goa...
Paper-based devices have a wide range of applications in point-of-care diagnostics, environmental an...
Paper is a common material that is promising for constructing microfluidic chips (lab-on-a-paper) fo...
Microfluidic paper analytical devices (µPADs) are small, paper-based matrices similar to Lab-on-a-Ch...
Microfluidic paper analytical devices (µPADs) are small, paper-based matrices similar to Lab-on-a-Ch...
Microfluidic paper analytical devices (µPADs) are small, paper-based matrices similar to Lab-on-a-Ch...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
This article introduces fully enclosed microfluidic paper-based analytical devices (microPADs) fabri...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
We report on the effects of fabrication methods, photolithography, wax printing, screen printing, an...
Microfluidic paper-based analytical devices (µPADs) have emerged as viable multiplexable platforms w...
Simple, user-friendly, economical and rapid sensing devices are in urgent demand for diagnostics pur...
This chapter will provide an overview of existing diagnostic devices made primarily out of paper and...
Paper (and other cellulose-based materials such as cotton thread and fabrics) are underexploited as ...
A major application of microfluidic paper-based analytical devices (mu PADs) includes the field of p...
Microfluidic paper-based analytical devices (microPADs) began as a simple idea with an ambitious goa...
Paper-based devices have a wide range of applications in point-of-care diagnostics, environmental an...
Paper is a common material that is promising for constructing microfluidic chips (lab-on-a-paper) fo...
Microfluidic paper analytical devices (µPADs) are small, paper-based matrices similar to Lab-on-a-Ch...
Microfluidic paper analytical devices (µPADs) are small, paper-based matrices similar to Lab-on-a-Ch...
Microfluidic paper analytical devices (µPADs) are small, paper-based matrices similar to Lab-on-a-Ch...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
This article introduces fully enclosed microfluidic paper-based analytical devices (microPADs) fabri...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
We report on the effects of fabrication methods, photolithography, wax printing, screen printing, an...
Microfluidic paper-based analytical devices (µPADs) have emerged as viable multiplexable platforms w...
Simple, user-friendly, economical and rapid sensing devices are in urgent demand for diagnostics pur...
This chapter will provide an overview of existing diagnostic devices made primarily out of paper and...
Paper (and other cellulose-based materials such as cotton thread and fabrics) are underexploited as ...