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Showing 1 to 6 of 6 for “"Absorption Microscopy"”.

  1. Photonic resonator absorption microscopy for biosensing with digital resolution

    … nanoparticle, enabling a new form of biosensor microscopy that we call Photonic Resonator Absorption Microscopy (PRAM). Dynamic PRAM imaging of nanoparticle tag capture enables direct 100 aM limit of detection and single-base mismatch selectivity in a 2-hour kinetic discrimination assay. The …

    uiuc Repository record for Photonic resonator absorption microscopy for biosensing with digital resolution (opens in a new tab)

  2. Photonic resonator absorption microscopy for dynamic point of care biosensing

    Submission published under a 24 month embargo labeled 'U of I Access', the embargo will last until 2027-08-01

    uiuc Repository record for Photonic resonator absorption microscopy for dynamic point of care biosensing (opens in a new tab)

  3. Quantitative mRNA detection with advanced nonlinear microscopy

    … technologies, second harmonic super-resolution microscopy (SHaSM) and transient absorption microscopy (TAM), are developed to detect and quantify single Human edimer receptor 2 (Her2) mRNA transcripts. The SHaSM is used to detect single mRNA transcript beyond the diffraction limit, while the TAM …

    purdue-thes Repository record for Quantitative mRNA detection with advanced nonlinear microscopy (opens in a new tab)

  4. DIRECT REAL-TIME REAL-SPACE IMAGING OF ENERGY TRANSPORT IN ORGANIC SEMI-CONDUCTORS

    … the movement of photo-excited species after the absorption of a photon in organic materials and across interfaces. In this thesis, we explore the energy transport and charge separation dynamics in two systems: a nanotubular J-aggregate formed from the self-assembly of molecular pseudoisocyanine …

    cambridge Repository record for DIRECT REAL-TIME REAL-SPACE IMAGING OF ENERGY TRANSPORT IN ORGANIC SEMI-CONDUCTORS (opens in a new tab)

  5. Harnessing Vibrations for Efficient Exciton Dynamics in Semiconducting Energy Materials

    … impulsive vibrational spectroscopy and transient absorption microscopy is made to directly observe vibronic couplings and exciton transport. In self-assembled poly(3-hexylthiophene) nanofibers we observe exceptional exciton transport that cannot be explained with current models of exciton …

    cambridge Repository record for Harnessing Vibrations for Efficient Exciton Dynamics in Semiconducting Energy Materials (opens in a new tab)