We have developed the first high-diffraction-efficiency two-dimensional (2-D) photonic crystals for molecular recognition and chemical sensing applications. We prepared close-packed 2-D polystyrene particle arrays by self-assembly of spreading particle monolayers on mercury surfaces. The 2-D particle arrays amazingly diffract 80% of the incident light. When a 2-D array was transferred onto a hydrogel thin film showing a hydrogel volume change in response to a specific analyte, the array spacing was altered, shifting the 2-D array diffraction wavelength. These 2-D array photonic crystals exhibit ultrahigh diffraction efficiencies that enable them to be used for visual determination of analyte concentrations. © 2011 American Chemical Society
Diffraction from a photonic crystal material composed of a hydrolyzed polymerized crystalline colloi...
We developed an intelligent polymerized crystalline colloidal array (IPCCA) photonic crystal sensing...
We developed a convenient and fast approach to preparing close-packed two-dimensional (2-D) particle...
We have developed the first high-diffraction-efficiency two-dimensional (2-D) photonic crystals for ...
We developed a novel two-dimensional (2-D) crystalline colloidal array photonic crystal sensing mate...
We developed a novel two-dimensional (2-D) crystalline colloidal array photonic crystal sensing mate...
We developed several photonic crystal hydrogel sensors based on our Polymerized Crystalline Colloida...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2015.Early detection ...
We report on a novel self-driven climbing of two-dimensional (2-D) ordered monolayer crystalline col...
We developed a novel DNA-functionalized 2D photonic crystal hydrogel sensing motif utilizing aptamer...
A versatile photonic crystal sensing motif based on a twodimensional (2D) inverse opal monolayer of ...
The rise of personalized medicine, increasing threat of bioterrorism, and growing concern of environ...
Label-free sensing strategies are an intensely studied and increasingly used alternative to signal a...
We developed a convenient and fast approach to preparing close-packed two-dimensional (2-D) particle...
Diffraction from a photonic crystal material composed of a hydrolyzed polymerized crystalline colloi...
Diffraction from a photonic crystal material composed of a hydrolyzed polymerized crystalline colloi...
We developed an intelligent polymerized crystalline colloidal array (IPCCA) photonic crystal sensing...
We developed a convenient and fast approach to preparing close-packed two-dimensional (2-D) particle...
We have developed the first high-diffraction-efficiency two-dimensional (2-D) photonic crystals for ...
We developed a novel two-dimensional (2-D) crystalline colloidal array photonic crystal sensing mate...
We developed a novel two-dimensional (2-D) crystalline colloidal array photonic crystal sensing mate...
We developed several photonic crystal hydrogel sensors based on our Polymerized Crystalline Colloida...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2015.Early detection ...
We report on a novel self-driven climbing of two-dimensional (2-D) ordered monolayer crystalline col...
We developed a novel DNA-functionalized 2D photonic crystal hydrogel sensing motif utilizing aptamer...
A versatile photonic crystal sensing motif based on a twodimensional (2D) inverse opal monolayer of ...
The rise of personalized medicine, increasing threat of bioterrorism, and growing concern of environ...
Label-free sensing strategies are an intensely studied and increasingly used alternative to signal a...
We developed a convenient and fast approach to preparing close-packed two-dimensional (2-D) particle...
Diffraction from a photonic crystal material composed of a hydrolyzed polymerized crystalline colloi...
Diffraction from a photonic crystal material composed of a hydrolyzed polymerized crystalline colloi...
We developed an intelligent polymerized crystalline colloidal array (IPCCA) photonic crystal sensing...
We developed a convenient and fast approach to preparing close-packed two-dimensional (2-D) particle...