In this work, a photoelectrochemical (PEC) method was introduced into a microfluidic paper-based analytical device (μ-PAD), and thus, a truly low-cost, simple, portable, and disposable microfluidic PEC origami device (μ-PECOD) with an internal chemiluminescence light source and external digital multimeter (DMM) was demonstrated. The PEC responses of this μ-PECOD were investigated, and the enhancements of photocurrents in μ-PECOD were observed under both external and internal light sources compared with that on a traditional flat electrode counterpart. As a further amplification of the generated photocurrents, an all-solid-state paper supercapacitor was constructed and integrated into the μ-PECOD to collect and store the generated photocurre...
Herein a novel split-type photoelectrochemical (PEC) immunosensing platform was designed for sensiti...
A bidirectional modulation of photoinduced charge carrier separation strategy based on TiO2/Bi4NbO8C...
An effective “on–off–on” photoelectrochemical (PEC)/visual sensing system based on cleaning-switchab...
Highly conductive, robust, and multifunctional integrated paper-supported electrodes are requisite t...
Nowadays, developing a cost-effective, easy-to-operate, and efficient signal amplification platform ...
This paper describes the fabrication and the performance of microfluidic paper-based electrochemical...
Paper has become increasingly recognized as a very interesting substrate for the construction of mic...
In this work, a versatile photoelectrochemical paper-based sensor based on N-carbon dots/TiO<sub>2</...
This article describes the device design and fabrication of two different configurations (flow-throu...
The attractive structural and mechanical properties of cellulose substrates (paper, cloth, and threa...
Prototypes of microfluidic paper-based separation devices with amperometric detection were developed...
Paper-based analytical technologies enable quantitative and rapid analysis of analytes from various ...
In this work, a highly sensitive photoelectrochemical (PEC) assay was constructed based on a donor–a...
We firstly constructed a kind of self-powered rotating paper-based microfluidic chip and used it to ...
Microfluidic paper-based analytical devices (uPADs) are indispensable tools for disease diagnostics....
Herein a novel split-type photoelectrochemical (PEC) immunosensing platform was designed for sensiti...
A bidirectional modulation of photoinduced charge carrier separation strategy based on TiO2/Bi4NbO8C...
An effective “on–off–on” photoelectrochemical (PEC)/visual sensing system based on cleaning-switchab...
Highly conductive, robust, and multifunctional integrated paper-supported electrodes are requisite t...
Nowadays, developing a cost-effective, easy-to-operate, and efficient signal amplification platform ...
This paper describes the fabrication and the performance of microfluidic paper-based electrochemical...
Paper has become increasingly recognized as a very interesting substrate for the construction of mic...
In this work, a versatile photoelectrochemical paper-based sensor based on N-carbon dots/TiO<sub>2</...
This article describes the device design and fabrication of two different configurations (flow-throu...
The attractive structural and mechanical properties of cellulose substrates (paper, cloth, and threa...
Prototypes of microfluidic paper-based separation devices with amperometric detection were developed...
Paper-based analytical technologies enable quantitative and rapid analysis of analytes from various ...
In this work, a highly sensitive photoelectrochemical (PEC) assay was constructed based on a donor–a...
We firstly constructed a kind of self-powered rotating paper-based microfluidic chip and used it to ...
Microfluidic paper-based analytical devices (uPADs) are indispensable tools for disease diagnostics....
Herein a novel split-type photoelectrochemical (PEC) immunosensing platform was designed for sensiti...
A bidirectional modulation of photoinduced charge carrier separation strategy based on TiO2/Bi4NbO8C...
An effective “on–off–on” photoelectrochemical (PEC)/visual sensing system based on cleaning-switchab...