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This Special Issue on “Soft Photonic Crystals and Metamaterials” from Materials consists of 10 papers that highlight recent advances in a broad scope of optical-wavelength and sub-wavelength structures made of soft materials and particles. Soft matter shows plenty of unique and improved optical properties for deep scientific understanding, thereby promoting fabrication, characterization and device performance for potential photonic applications that include, but are not limited to, photovoltaic cells, photodetectors, light-emitting diodes, tunable microlasers, optical filters for biosensors, smart windows, virtual/augmented reality head-mounted elements, and high-speed spatial light modulators in glasses-free 3D displays.
Materials science --- localization of light --- photonic crystals --- chirality --- dye-doped cholesteric liquid crystal --- optical Tamm states --- resonant frequency dispersion --- smart window --- cholesteric liquid crystal --- photochromic dichroic dye --- Tamm plasmon --- Bragg mirror --- rugate filter --- band gap --- light reflection and transmission --- metasurfaces --- tamm plasmon polaritons --- uniform lying helix --- polymer network --- frequency modulation --- electro-optic response --- mesogenic dimer --- flexoelectric effect --- dielectric effect --- nematic liquid crystal --- 2D periodic structures --- hexagonal diffraction patterns --- photoalignment --- out-of-plane reorientation --- flat optical elements --- optical Freedericksz transition --- dye-doped liquid crystal --- molecular reorientation --- colloidal crystals --- magnetite --- microparticles --- Bragg reflection --- magnetic response --- silica particles --- opals --- polydispersity index --- disLocate --- Voronoi tessellations --- bond order parameters --- metasurface --- metagratings --- n/a
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In 2015, the first pharmaceutical cocrystal was approved by the FDA. Since then, the number of cocrystals on the market and in the development pipeline has been slowly but steadily growing. It is now well established that cocrystals are a versatile new approach to oral drug formulation. This Reprint Book is a collection of articles that show the utility of pharmaceutical cocrystals and various aspects of cocrystal research: • Cocrystals as a strategy to modify the physicochemical properties of a drug such as dissolution behaviour, tabletability, and melting point; • Development of new coformers; • Screening studies for multiple cocrystal forms; • Cocrystals in nano-sized drug delivery.
Research & information: general --- nitazoxanide --- cocrystals --- multicomponent crystals --- dissolution behavior --- supersaturated formulations --- crystallization inhibitors --- drug-polymer interactions --- nano co-crystals --- crystal engineering --- polydispersity index --- zeta potential --- particle size --- zidovudine --- lamivudine --- HIV/AIDS --- sonochemistry --- imidazole N-oxides --- barbituric acid --- thiobarbituric acid --- pharmaceutical cocrystals --- mechanochemistry --- solid state NMR --- X-ray Diffraction --- design of experiments --- Quality by Design --- cocrystal --- compaction --- nanoindentation --- slip plane --- tabletability --- surface topology --- interparticulate bonding area --- interparticulate bonding strength --- nefiracetam --- solid state --- solubility --- dissolution rate --- stability --- formulation --- diclofenac sodium --- L-proline --- salt cocrystal --- multicomponent crystal --- monohydrate --- tetrahydrate --- dissolution --- itraconazole --- terephthalic acid --- crystal structure --- solid-state --- thermal analysis --- wettability --- n/a
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In 2015, the first pharmaceutical cocrystal was approved by the FDA. Since then, the number of cocrystals on the market and in the development pipeline has been slowly but steadily growing. It is now well established that cocrystals are a versatile new approach to oral drug formulation. This Reprint Book is a collection of articles that show the utility of pharmaceutical cocrystals and various aspects of cocrystal research: • Cocrystals as a strategy to modify the physicochemical properties of a drug such as dissolution behaviour, tabletability, and melting point; • Development of new coformers; • Screening studies for multiple cocrystal forms; • Cocrystals in nano-sized drug delivery.
nitazoxanide --- cocrystals --- multicomponent crystals --- dissolution behavior --- supersaturated formulations --- crystallization inhibitors --- drug-polymer interactions --- nano co-crystals --- crystal engineering --- polydispersity index --- zeta potential --- particle size --- zidovudine --- lamivudine --- HIV/AIDS --- sonochemistry --- imidazole N-oxides --- barbituric acid --- thiobarbituric acid --- pharmaceutical cocrystals --- mechanochemistry --- solid state NMR --- X-ray Diffraction --- design of experiments --- Quality by Design --- cocrystal --- compaction --- nanoindentation --- slip plane --- tabletability --- surface topology --- interparticulate bonding area --- interparticulate bonding strength --- nefiracetam --- solid state --- solubility --- dissolution rate --- stability --- formulation --- diclofenac sodium --- L-proline --- salt cocrystal --- multicomponent crystal --- monohydrate --- tetrahydrate --- dissolution --- itraconazole --- terephthalic acid --- crystal structure --- solid-state --- thermal analysis --- wettability --- n/a
Choose an application
In 2015, the first pharmaceutical cocrystal was approved by the FDA. Since then, the number of cocrystals on the market and in the development pipeline has been slowly but steadily growing. It is now well established that cocrystals are a versatile new approach to oral drug formulation. This Reprint Book is a collection of articles that show the utility of pharmaceutical cocrystals and various aspects of cocrystal research: • Cocrystals as a strategy to modify the physicochemical properties of a drug such as dissolution behaviour, tabletability, and melting point; • Development of new coformers; • Screening studies for multiple cocrystal forms; • Cocrystals in nano-sized drug delivery.
Research & information: general --- nitazoxanide --- cocrystals --- multicomponent crystals --- dissolution behavior --- supersaturated formulations --- crystallization inhibitors --- drug-polymer interactions --- nano co-crystals --- crystal engineering --- polydispersity index --- zeta potential --- particle size --- zidovudine --- lamivudine --- HIV/AIDS --- sonochemistry --- imidazole N-oxides --- barbituric acid --- thiobarbituric acid --- pharmaceutical cocrystals --- mechanochemistry --- solid state NMR --- X-ray Diffraction --- design of experiments --- Quality by Design --- cocrystal --- compaction --- nanoindentation --- slip plane --- tabletability --- surface topology --- interparticulate bonding area --- interparticulate bonding strength --- nefiracetam --- solid state --- solubility --- dissolution rate --- stability --- formulation --- diclofenac sodium --- L-proline --- salt cocrystal --- multicomponent crystal --- monohydrate --- tetrahydrate --- dissolution --- itraconazole --- terephthalic acid --- crystal structure --- solid-state --- thermal analysis --- wettability --- nitazoxanide --- cocrystals --- multicomponent crystals --- dissolution behavior --- supersaturated formulations --- crystallization inhibitors --- drug-polymer interactions --- nano co-crystals --- crystal engineering --- polydispersity index --- zeta potential --- particle size --- zidovudine --- lamivudine --- HIV/AIDS --- sonochemistry --- imidazole N-oxides --- barbituric acid --- thiobarbituric acid --- pharmaceutical cocrystals --- mechanochemistry --- solid state NMR --- X-ray Diffraction --- design of experiments --- Quality by Design --- cocrystal --- compaction --- nanoindentation --- slip plane --- tabletability --- surface topology --- interparticulate bonding area --- interparticulate bonding strength --- nefiracetam --- solid state --- solubility --- dissolution rate --- stability --- formulation --- diclofenac sodium --- L-proline --- salt cocrystal --- multicomponent crystal --- monohydrate --- tetrahydrate --- dissolution --- itraconazole --- terephthalic acid --- crystal structure --- solid-state --- thermal analysis --- wettability
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