The bio-sensing for the convenient detection of bacteria has been widely explored with the use of various sensing materials and techniques. It is still a challenge to achieve an ultrasensitive and selective, but simple, rapid, and inexpensive detection method for bacteria. We report on surface-enhanced Raman scattering (SERS) for the detection of living bacteria in drinking water by employing a synthesis of silver nanoparticles coating the cell wall of bacteria. We found that the Raman signals intensity of bacteria after AgNP synthesis mainly depends on the zeta potential of the cell wall. The enhancement of the Raman signal of bacteria using this strategy is about 30-fold higher than that in the case of a simply mixed colloid–bacterial sus...
Drinking polluted water can cause deadly diseases, and clean water is becoming increasingly scarce i...
Prompt identification of bacteria is needed in a variety of situations such as the detection of biol...
There is a challenge to obtain an ultrasensitive and rapid approach to detect bacteria and identify ...
Techniques to distinguish between live and dead bacteria in a quantitative manner are in high demand...
A simple layer-by-layer method to coat the bacterial cells with gold and silver nanoparticles (AuNPs...
International audienceIn this work, surface-enhanced Raman spectroscopy (SERS) method based on uncoa...
Rapid detection and discrimination of pathogenic bacteria for food safety, environmental pollution, ...
Background: Rapid detection and discrimination of bacteria for biomedical and food safety applicatio...
Sensitive, selective, rapid, and label-free detection of pathogenic bacteria with high generality is...
Abstract Rapid identification and diagnosis of bacteria and other microorganisms is a great challeng...
Whole bacterial cell characterization is critically important for fast bacterial identification. Sur...
Surface enhanced Raman spectroscopy (SERS) has been widely used for chemical detection. Moreover, th...
National audienceIdentification and quantification of microorganisms has become an essential issue i...
A nanobiosensor chip, utilizing surface enhanced Raman spectroscopy (SERS) on nanosculptured thin fi...
Rapid and accurate diagnosis for pathogens and their antibiotic susceptibility is critical for contr...
Drinking polluted water can cause deadly diseases, and clean water is becoming increasingly scarce i...
Prompt identification of bacteria is needed in a variety of situations such as the detection of biol...
There is a challenge to obtain an ultrasensitive and rapid approach to detect bacteria and identify ...
Techniques to distinguish between live and dead bacteria in a quantitative manner are in high demand...
A simple layer-by-layer method to coat the bacterial cells with gold and silver nanoparticles (AuNPs...
International audienceIn this work, surface-enhanced Raman spectroscopy (SERS) method based on uncoa...
Rapid detection and discrimination of pathogenic bacteria for food safety, environmental pollution, ...
Background: Rapid detection and discrimination of bacteria for biomedical and food safety applicatio...
Sensitive, selective, rapid, and label-free detection of pathogenic bacteria with high generality is...
Abstract Rapid identification and diagnosis of bacteria and other microorganisms is a great challeng...
Whole bacterial cell characterization is critically important for fast bacterial identification. Sur...
Surface enhanced Raman spectroscopy (SERS) has been widely used for chemical detection. Moreover, th...
National audienceIdentification and quantification of microorganisms has become an essential issue i...
A nanobiosensor chip, utilizing surface enhanced Raman spectroscopy (SERS) on nanosculptured thin fi...
Rapid and accurate diagnosis for pathogens and their antibiotic susceptibility is critical for contr...
Drinking polluted water can cause deadly diseases, and clean water is becoming increasingly scarce i...
Prompt identification of bacteria is needed in a variety of situations such as the detection of biol...
There is a challenge to obtain an ultrasensitive and rapid approach to detect bacteria and identify ...