Poster # |
PRESENTER FIRST NAME |
PRESENTER LAST NAME |
PRESENTER DEPT |
PRESENTER INSTITUTION |
PRESENTATION TITLE |
PRIMARY ABSTRACT SUBJECT AREA |
|
1 |
Yicheng |
Yang |
Agricultural and Biological Engineering Department |
University of Florida |
Fe-modified Biochar Enhances Microbial Nitrogen Removal Capability of Constructed Wetland |
Nano-Agriculture |
|
2 |
Albert |
Ting |
Biochemistry and Molecular Biology |
University of Miami |
Design of a Metal-Organic Framework Encapsulated Tamavidin-Gaussia Luciferase for COVID-19 Spike Antigen Bioluminescent Immunoassay |
Nano-Biology |
|
3 |
Rachael |
Crews |
Biomedical and Chemical Engineering and Sciences |
Florida Institute of Technology |
Macromolecular Crowding on the Formation of Amyloid Fibers, Fiber Bundles, and Hydrogels |
Nano-Biology |
|
4 |
Stephanie |
Herrera |
Biomedical Engineering |
University of Florida |
Computationally-Designed ACE2 SBP1 Mutants That Inhibit ACE2 Binding To SARS-Cov-2 Spike RBD |
Nano-Biology |
|
5 |
Aamar |
Shabir |
Electrical and Computer Engineering |
Florida Polytechnic University |
Charility Effect of Composite CNT for Improving the Solar Cell Efficiency |
Nano-Chemistry |
|
6 |
Dana |
Hughes |
Biological Science |
Florida State University |
Combinatorial Mixtures Of Lipid-Like Molecules for Liquid/Liquid Extraction |
Nano-Chemistry |
|
7 |
Emily |
Shiel |
Chemistry and Biochemistry |
Florida State University |
Partitioning Indicator Displacement Assay |
Nano-Chemistry |
|
8 |
Guntis |
Rutins |
NanoScience Technology Center |
University of Central Florida |
Plasmonics Structures for Multi-Band Signal Enhancement in Nanoscale Mid-infrared Spectroscopy |
Nano-Chemistry |
|
9 |
Hanqin |
Zhao |
Chemical Engineering Department |
University of Florida |
Rational Design of Rh/CeO2 Catalyst via Atomic Layer Deposition (ALD) Overcoating with Alumina |
Nano-Chemistry |
|
10 |
Joshua |
Yoho |
Chemistry |
University of Florida |
Plasmon-Enhanced Hydrogenation of Acetylene to Ethylene on AuPd Single-Atom Alloys |
Nano-Chemistry |
|
11 |
Maged |
Elshatoury |
Nanoscience and Nanotechnology |
University of Central Florida |
Copper Nanowires by Hydrazine Reduction of Copper Oxide Nanowires |
Nano-Chemistry |
|
12 |
Maichong |
Xie |
Department of Chemistry |
University of Miami |
Substrate Effect of the Peptide-Capped Synergistic Heterogeneous Pt/Au Nanoparticles on the Catalytic Hydrogenation Activity |
Nano-Chemistry |
|
13 |
Olya |
Radeglia |
Department of Chemistry |
University of Central Florida |
Polydopamine and Molecular Imprinting |
Nano-Chemistry |
|
14 |
Selin |
Donmez |
Chemistry and Biochemistry |
Florida State University |
Improving Colloidal Stability and Photophysical Properties of CsPbBr3 Nanocrystals via a Bromide-Based Polysalt Coating |
Nano-Chemistry |
|
15 |
Sevde |
Dogruer |
Chemistry and Biochemistry |
Florida International University |
Differentiation Of Structurally Similar Fentanyl Analogs with Theoretical and Experimental Analysis by Surface-Enhanced Raman Spectroscopy (SERS) |
Nano-Chemistry |
|
16 |
Shu |
Liu |
Physics |
Florida State Unvierisity |
Combinatorial Mixtures Of Lipid-Like Molecules for Liquid/Liquid Extraction |
Nano-Chemistry |
|
17 |
Angel |
Gatev |
Biomedical Engineering |
University of Florida |
A New Flexible PCB Connector for a Tissue-engineered Electronic Nerve Interface |
Nano-Electronics |
|
18 |
Duc |
Tran |
Biomedical Engineering |
University of Florida |
Tensioning and Fatigue Test of Tissue-Engineered Electronic Nerve Interface (TEENI) Devices |
Nano-Electronics |
|
19 |
Mohammad Shakhawat |
Hossain |
Electrical Engineering |
University of South Florida |
Towards Electrochemical Nose: a Study of Selectivity Trend of Metal Phthalocyanines |
Nano-Electronics |
|
20 |
Paritosh |
Rustogi |
ECE |
University of Florida |
Advanced High-Channel-Density Implantable Connectors: Effect of Parameters Impacting Electrical-isolation Performance |
Nano-Electronics |
|
21 |
Sai Pranesh |
Amirisetti |
Electrical and Computer Engineering |
University of Florida |
Fabrication Of Thick, Laminated, Electroinfiltrated Magnetic Nanocomposites to Reduce Dimensional Resonance Effects |
Nano-Electronics |
|
22 |
Chenlu |
Yang |
Department of Chemistry |
University of Florida |
Controllable Synthesis of Gold-based Nanomaterials |
Nano-Materials |
|
23 |
Daniil |
Ivannikov |
Engineering Physics |
Florida Polytechnic University |
Novel Nanomaterials for Clean Energy Storage, Energy Savings and Environmental |
Nano-Materials |
|
24 |
Favian |
Gonzalez |
Physics |
University of Central Florida |
Results of Using Metals to Exfoliate Monolayer MoS2* |
Nano-Materials |
|
25 |
Gabriel |
Marciaga |
Physics |
University of Central Florida |
n-doping of two-dimensional MoS2 via commonly used biological preservative NaN3 |
Nano-Materials |
|
26 |
Juanpablo |
Olguin |
Biomedical Engineering |
University of Florida |
Synthetic hydrogels with tunable glycosylation to probe galectin-ECM interactions in aberrant glycosylated ECMs |
Nano-Materials |
|
27 |
Lucas |
Melgar |
Biomedical Engineering |
University of Florida |
Shear Thinning Properties of a Co-Assembling Peptide Hydrogel |
Nano-Materials |
|
28 |
Md Rubayat-E |
Tanjil |
Mechanical Engineering |
University of South Florida |
Solid-State Transformation of 0D and 1D Metal Nanoparticles to Anisotropic 2D Morphologies |
Nano-Materials |
|
29 |
Rita |
Das Mahapatra |
Chemical Engineering |
University of Florida |
Design of silane polymers as novel iron oxide nanoparticle coatings |
Nano-Materials |
|
30 |
Sarah |
Stenberg |
Biomedical Engineering |
University of Florida |
Incorporation of Liquid Crystal Polymer to the Tissue Engineered Electronic Nerve Interface (TEENI) |
Nano-Materials |
|
31 |
Sushant Madhukar |
Nagare |
Electrical Engineering, Clean Energy Research Center, |
University of South Florida |
Nano-encapsulated Thermochromic Materials for Energy-Saving Applications |
Nano-Materials |
|
32 |
Alexander |
Gage |
Engineering Physics |
Florida Polytechnic University |
Development and Miniaturization of Biosensors |
Nano-Medicine |
|
33 |
Fahima |
Alam |
Taneja College of Pharmacy |
University of South Florida |
Recent Trends in Treating Wound Healing Using Nano Drugs Delivery Systems |
Nano-Medicine |
|
34 |
Haley |
Royce |
Department of Chemical, Biological, and Materials Engineering |
University of South Florida |
Nano-Neural Stimulation |
Nano-Medicine |
|
35 |
Kevin |
Núño |
Graduate Programs, Department of Pharmaceutical Sciences |
University of South Florida |
Immunosuppressants and Nanotechnology: Innovations in Nanoformulations and Drug Delivery Systems |
Nano-Medicine |
|
36 |
Mohit |
Singh |
Biochemistry and Molecular Biology |
University of Miami Miller School of Medicine |
Peptide-Functionalized Dendrimer Nanocarriers for Targeted Microdystrophin Gene Delivery |
Nano-Medicine |
|
37 |
Arjun |
Panicker |
Chemical Engineering |
University of Florida |
Mechanisms of Manganese Dioxide Nanoparticle Uptake and Retention for Chondroprotection |
Nano-Particles |
|
38 |
Gibret |
Umeukeje Ifedi |
Taneja College of Pharmacy |
University of South Florida |
Potential Risk of Nanotechnology Radioactive Materials for Diagnostics |
Nano-Particles |
|
39 |
Giuliana |
Giannelli |
Burnett School of Biomedical Sciences |
University of Central Florida |
Curcumin Nanoparticles for Enhanced Peripheral Nerve Regeneration |
Nano-Particles |
|
40 |
Madisen |
Domayer |
Biomedical Engineering |
University of Florida |
Investigation on Co-Assembly Granule Formation Conditions |
Nano-Particles |
|
41 |
McKenna |
Williams |
Health Professions and Sciences |
University of Central Florida |
Detection of Pathogens with the Enhancement of Antibody-Nanoparticle Complexes |
Nano-Particles |
|
42 |
N’Quel |
Bonner |
University of Florida Health Cancer Center |
University of Florida |
Surface Modification on Superparamagnetic Iron Oxide Nanoparticles for Aqueous Environments |
Nano-Particles |
|
43 |
Srujana |
Yellapragada |
Biomedical Engineering |
Florida International University |
Obtaining Optimal Size of Mesoporous Silica Nanoparticles Under Alternating pH Conditions |
Nano-Particles |
|
44 |
Cong |
Sun |
Chemical Engineering |
University of Florida |
Developing a Fast, Accurate and Error- Reducing Histological Image Analysis Tool |
Tissue Engineering |
|