© The Royal Society of Chemistry 2017. A smartphone fluorimeter capable of time-based fluorescence intensity measurements at various temperatures is reported. Excitation is provided by an integrated UV LED (λex = 370 nm) and detection obtained using the in-built CMOS camera. A Peltier is integrated to allow measurements of the intensity over T = 10 to 40 °C. All components are controlled using a smartphone battery powered Arduino microcontroller and a customised Android application that allows sequential fluorescence imaging and quantification every δt = 4 seconds. The temperature dependence of fluorescence intensity for four emitters (rhodamine B, rhodamine 6G, 5,10,15,20-tetraphenylporphyrin and 6-(1,4,8,11-tetraazacyclotetradecane)2-ethy...
© 2022 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for ...
Rapid and quantitative molecular diagnostics in the field, at home, and at remote clinics is essenti...
Through their computational power and connectivity, smartphones are poised to rapidly expand telemed...
Thermal images generated from infrared radiation are useful for monitoring many processes; however, ...
Field-portable instruments for ubiquitous detection and analysis of biological, environmental and ag...
ABSTRACT: We demonstrate the first use of smartphone spectrophotometry for readout of fluorescence-b...
Abstract Application of optically superior, tunable fluorescent nanotechnologies have long been demo...
We demonstrate the first use of smartphone spectrophotometry for readout of fluorescence-based biolo...
© 2001-2012 IEEE. A novel portable fluorometer combining the attributes of a smartphone with an easy...
In order to increase the monitoring capabilities of inland and coastal waters, there is a need for n...
Smartphones have shown promise as an enabling technology for portable and distributed point-of-care ...
In order to increase the monitoring capabilities of inland and coastal waters, there is a need for n...
The blue OLED emission from a mobile phone was characterized, revealing a sharp emission band center...
© 2015 Copyright SPIE. A self-powered smartphone-based field-portable "dual" spectrometer has been d...
Due to the economy of scale, smartphones are becoming more affordable while their computing powers a...
© 2022 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for ...
Rapid and quantitative molecular diagnostics in the field, at home, and at remote clinics is essenti...
Through their computational power and connectivity, smartphones are poised to rapidly expand telemed...
Thermal images generated from infrared radiation are useful for monitoring many processes; however, ...
Field-portable instruments for ubiquitous detection and analysis of biological, environmental and ag...
ABSTRACT: We demonstrate the first use of smartphone spectrophotometry for readout of fluorescence-b...
Abstract Application of optically superior, tunable fluorescent nanotechnologies have long been demo...
We demonstrate the first use of smartphone spectrophotometry for readout of fluorescence-based biolo...
© 2001-2012 IEEE. A novel portable fluorometer combining the attributes of a smartphone with an easy...
In order to increase the monitoring capabilities of inland and coastal waters, there is a need for n...
Smartphones have shown promise as an enabling technology for portable and distributed point-of-care ...
In order to increase the monitoring capabilities of inland and coastal waters, there is a need for n...
The blue OLED emission from a mobile phone was characterized, revealing a sharp emission band center...
© 2015 Copyright SPIE. A self-powered smartphone-based field-portable "dual" spectrometer has been d...
Due to the economy of scale, smartphones are becoming more affordable while their computing powers a...
© 2022 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for ...
Rapid and quantitative molecular diagnostics in the field, at home, and at remote clinics is essenti...
Through their computational power and connectivity, smartphones are poised to rapidly expand telemed...