Polymer microarrays were utilized for the high-throughput screening and discovery of optimal polymeric substrates capable of trapping functional ratiometric fluorescence-based pH sensors. This led to the identification of poly(methyl methacrylate-co-2-(dimethylamino) ethyl acrylate) (PA101), which allowed, via dip coating, the attachment of fluorescent pH sensors onto the tips of optical fibers, resulting in robust, rapid, and reproducible sensing of physiological pHs
This paper reviews current state-of-the-art methods of measuring pH levels that are based on polymer...
This work describes the development of optical sensors for the measurement of pH. They work by measu...
Optical pH sensors enable noninvasive monitoring of pH, yet in pure sensing terms, the potentiometri...
Optical fibre-based pH sensors have been well explored and studied for physiological use since the...
A kind of optical pH sensor was demonstrated that is based on a pH-sensitive fluorescence dye-doped ...
The growing needs for optical pH sensors in many applications in recent years; especially the biomed...
Abstract Wearable pH sensors are useful tools in the healthcare and fitness industries, allowing con...
The pH is fundamental to biological function and its measurement therefore crucial across all biosci...
pH sensing at the single-cell level without negatively affecting living cells is very important but ...
The goal of this study is to develop the technology to achieve pH sensing using low-cost polymeric o...
A novel optical pH sensor for the physiological rangehas been developed by these authors. The fluore...
Swellable polymer microspheres that respond to pH were prepared by free radical dispersion polymeriz...
Optical, and especially fiber-optic techniques for the sensing of pH have become very attractive and...
Optical fiber sensors developed for measuring pH values usually employ an unclad and unstrained sect...
© 2015 American Chemical Society. Recently, ratiometric pH nanosensors have emerged as a robust tool...
This paper reviews current state-of-the-art methods of measuring pH levels that are based on polymer...
This work describes the development of optical sensors for the measurement of pH. They work by measu...
Optical pH sensors enable noninvasive monitoring of pH, yet in pure sensing terms, the potentiometri...
Optical fibre-based pH sensors have been well explored and studied for physiological use since the...
A kind of optical pH sensor was demonstrated that is based on a pH-sensitive fluorescence dye-doped ...
The growing needs for optical pH sensors in many applications in recent years; especially the biomed...
Abstract Wearable pH sensors are useful tools in the healthcare and fitness industries, allowing con...
The pH is fundamental to biological function and its measurement therefore crucial across all biosci...
pH sensing at the single-cell level without negatively affecting living cells is very important but ...
The goal of this study is to develop the technology to achieve pH sensing using low-cost polymeric o...
A novel optical pH sensor for the physiological rangehas been developed by these authors. The fluore...
Swellable polymer microspheres that respond to pH were prepared by free radical dispersion polymeriz...
Optical, and especially fiber-optic techniques for the sensing of pH have become very attractive and...
Optical fiber sensors developed for measuring pH values usually employ an unclad and unstrained sect...
© 2015 American Chemical Society. Recently, ratiometric pH nanosensors have emerged as a robust tool...
This paper reviews current state-of-the-art methods of measuring pH levels that are based on polymer...
This work describes the development of optical sensors for the measurement of pH. They work by measu...
Optical pH sensors enable noninvasive monitoring of pH, yet in pure sensing terms, the potentiometri...