Label-free molecular logic gates (AND, INHIBIT, and OR) are constructed based on specific conformation modulation of a guanine- and thymine-rich DNA, while the optical readout is enabled by the tunable metamaterials which serve as a substrate for surface enhanced Raman spectroscopy. The DNA logic is simple to operate, highly reproducible, and can be stimulated by ultra-low concentration of the external inputs, enabling an extremely sensitive detection of mercury ions down to 2 × 10−4 ppb
This report presents a systematic study on the feasibility of using oligonucleotide functionalized g...
Mercury is an extremely toxic chemical pollutant of our environment. It has attracted the world's at...
A novel electrochemical biosensor with high sensitivity and selectivity for mercuric ion detection, ...
Label-free molecular logic gates (AND, INHIBIT, and OR) are constructed based on specific conformati...
Heavy metal pollution has long been the focus of attention because of its serious threat to human he...
Reliable and ultrasensitive detection of mercury ions is of paramount importance for toxicology asse...
A novel tetrahedral DNA nanostructure (TDN) functionalized paper-based colorimetric sensor was devel...
Mercury ion (Hg2+) is recognized as one of the most toxic metal ions for the environment and for hum...
Mercury ion (Hg<sup>2+</sup>) is one of the most toxic heavy metals that has severe adverse effects ...
We propose a highly sensitive and selective surface-enhanced Raman scattering (SERS) method for dete...
Mercury (Hg) is a potent neurotoxin in fish, wildlife, and humans. The detection of Hg(II) ions in w...
We report a highly sensitive surface-enhanced Raman scattering (SERS) platform for the selective tra...
Mercury (Hg) and its compounds, originating from a variety of natural and anthropogenic sources, are...
Many natural phenomena are associated with the presence of two or more separate variables. We report...
We report a novel nanophotonic biosensor surface capable of both colorimetric detection and Raman-sc...
This report presents a systematic study on the feasibility of using oligonucleotide functionalized g...
Mercury is an extremely toxic chemical pollutant of our environment. It has attracted the world's at...
A novel electrochemical biosensor with high sensitivity and selectivity for mercuric ion detection, ...
Label-free molecular logic gates (AND, INHIBIT, and OR) are constructed based on specific conformati...
Heavy metal pollution has long been the focus of attention because of its serious threat to human he...
Reliable and ultrasensitive detection of mercury ions is of paramount importance for toxicology asse...
A novel tetrahedral DNA nanostructure (TDN) functionalized paper-based colorimetric sensor was devel...
Mercury ion (Hg2+) is recognized as one of the most toxic metal ions for the environment and for hum...
Mercury ion (Hg<sup>2+</sup>) is one of the most toxic heavy metals that has severe adverse effects ...
We propose a highly sensitive and selective surface-enhanced Raman scattering (SERS) method for dete...
Mercury (Hg) is a potent neurotoxin in fish, wildlife, and humans. The detection of Hg(II) ions in w...
We report a highly sensitive surface-enhanced Raman scattering (SERS) platform for the selective tra...
Mercury (Hg) and its compounds, originating from a variety of natural and anthropogenic sources, are...
Many natural phenomena are associated with the presence of two or more separate variables. We report...
We report a novel nanophotonic biosensor surface capable of both colorimetric detection and Raman-sc...
This report presents a systematic study on the feasibility of using oligonucleotide functionalized g...
Mercury is an extremely toxic chemical pollutant of our environment. It has attracted the world's at...
A novel electrochemical biosensor with high sensitivity and selectivity for mercuric ion detection, ...