john morris group 2020 · — reference cell —ch30h m,'z: 31 —c02 44 — catalysis cell t...

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John Morris Group 2020 Nathan Jones, Nick Sapienza, Andrew Maynes, Graham Frazier, Harrison Siegal, McAlister Council-Troche, Undergraduates: Adam Gaghan, Anna Falls, Christopher Stoll, Rahaf Rousan Atmospheric Chemistry of Gases and Aerosols Atmospheric Cloud Simulation Chamber Novel Filtration Materials for Chemical Weapon Degradation Ultrahigh Vacuum Chamber Zr 6 -based Metal-Organic Frameworks θ = − ∙ ln θ/ νθ CWA Simulants Determining Adsorption Mechanisms Quantifying Adsorption Energies Ambient-Pressure Flow Reactor for Catalytic Screening Photocatalysis on Nanoparticulate Surfaces O 2 hn (UV) TiO 2 -SiO 2 Binary Catalyst R O L Uptake Coefficient of VOCs and CWA

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Page 1: John Morris Group 2020 · — Reference Cell —CH30H m,'z: 31 —C02 44 — Catalysis Cell t = 40 s 100 Time 30 Precision 02, CO, MeOH, CWA simulant Gas-phase product desorption

John Morris Group 2020Nathan Jones, Nick Sapienza, Andrew Maynes, Graham Frazier,

Harrison Siegal, McAlister Council-Troche, Undergraduates: Adam Gaghan, Anna Falls, Christopher Stoll, Rahaf

Rousan

Atmospheric Chemistry of Gases and Aerosols

Atmospheric Cloud Simulation Chamber

1

1

2

2

AA

BB

3D Assembly

Novel Filtration Materials for Chemical Weapon Degradation

Ultrahigh Vacuum Chamber Zr6-based Metal-Organic Frameworks

𝐸𝑑𝑒𝑠 θ = −𝑘𝐵𝑇 ∙ ln −𝑑θ/𝑑𝑇

νθ

CWA Simulants Determining Adsorption Mechanisms

Quantifying Adsorption Energies

Ambient-Pressure Flow Reactor for Catalytic Screening

Photocatalysis on Nanoparticulate Surfaces

O2

hn (UV)

TiO2-SiO2 Binary Catalyst

R

OL

Uptake Coefficientof VOCs and CWA