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  • Author(s):
    William Philllip, Siyi Qu, Sherwood Benavides, Peng Gao, Feng Gao
    Abstract:

    A method for fabricating nanostructured polymeric materials based on a combination of inkjet printing and template synthesis. Layer-by-layer assembled nanotubes can be synthesized in a polycarbonate track-etched (PCTE) membrane by printing poly(allylamine hydrochloride) (PAH) and poly(styrenesulfonate) (PSS) sequentially. By changing the printing conditions, polymeric nanotubes or nanowires can be prepared by printing poly(vinyl alcohol) (PVA) in a PCTE template. Inkjet printing paired with t…

    Date Created:
    2019-08-20
    Resource Type
    Document
  • Subject(s):
    Quantum theory., Quantum theory -- Proceedings, conferences, collections, etc.
    Abstract:

    Introductory letter describing the Epistemological Letters collection and providing historical context.

    Date Created:
    2019-08-19
    Resource Type
    Document
  • Author:
    Kelly Ann Heilman
    Advisory Committee:
    Jason S. McLachlan
    Degree Area:
    Biological Sciences
    Degree:
    Doctor of Philosophy
    Defense Date:
    2019-07-12
  • Author:
    Yide Zhang
    Advisory Committee:
    Scott S. Howard, Thomas O'Sullivan, Alan Seabaugh, Cody Smith
    Degree Area:
    Electrical Engineering
    Degree:
    Doctor of Philosophy
    Defense Date:
    2019-08-06
  • Author:
    Yurii Morozov
    Advisory Committee:
    Masaru K. Kuno
    Degree Area:
    Chemistry and Biochemistry
    Degree:
    Doctor of Philosophy
    Defense Date:
    2019-07-26
  • Author(s):
    Gregory Timp, Eamonn Kennedy, Zhuxin Dong, Clare Tennant
    Abstract:

    Disclosed are then inorganic membranes having a defined topography that includes pores having a defined diameter of nanometer and sub-nanometer diameter. The thin membranes are resistant to protein denaturing agents, and may be employed in analytical and clinical methods for identifying single amino acid residues within the sequence of a protein and the pores are other than NspA pores. Methods for making a thin inorganic membrane with nanopore and sub-nanopore topography and conical cone stru…

    Date Created:
    2019-02-28
    Resource Type
    Document
  • Author(s):
    Gregory Timp, Eamonn Kennedy
    Abstract:

    Disclosed are then inorganic membranes having a defined topography that includes pores having a defined diameter of nanometer and sub-nanometer diameter. The thin membranes are resistant to protein denaturing agents, and may be employed in analytical and clinical methods for identifying single amino acid residues within the sequence of a protein and the pores are other than NspA pores. Methods for making a thin inorganic membrane with nanopore and sub-nanopore topography and conical cone stru…

    Date Created:
    2019-02-28
    Resource Type
    Document
  • Abstract:

    The present invention relates to DNAzymes (also known as deoxyribozymes, DNA enzymes, catalytic DNA, or DZ), which are conjugated to nanoparticles (NP) to facilitate the detection of nucleic acids. One aspect of the invention relates to compounds comprising DNAzymes conjugated to nanoparticles (DZ-NP), such as metallic or gold nanoparticles, and methods for their synthesis. Another aspect of the invention relates to methods of using the conjugated compounds to detect nucleic acids, such as ge…

    Date Created:
    2019-08-07
    Resource Type
    Document
  • Author:
    Matthew R. Kemnetz
    Advisory Committee:
    Flint Thomas, Stanislav V. Gordeyev, Eric J. Jumper, Thomas Juliano
    Degree Area:
    Aerospace and Mechanical Engineering
    Degree:
    Doctor of Philosophy
    Defense Date:
    2019-07-19
  • Author:
    Sandipan Banerjee
    Advisory Committee:
    Chaoli Wang, Walter J. Scheirer, Patrick J. Flynn, Kevin W. Bowyer, Domingo Mery
    Degree Area:
    Computer Science and Engineering
    Degree:
    Doctor of Philosophy
    Defense Date:
    2019-05-06
  • Author:
    Xiaobin Wu
    Advisory Committee:
    Thomas E. Fuja , Thomas Gregory Pratt
    Degree Area:
    Electrical Engineering
    Degree:
    Doctor of Philosophy
    Defense Date:
    2019-07-17
  • Subject(s):
    God--Proof., Catholic pamphlets.--local
    Resource Type
    Pamphlet