roadmap nanotechnology for nuclear non-proliferation applications

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L ouisiana T ech U niversity L ouisiana T ech U niversity Prote c t i on Preven tion DETECTION Prote c t i on Preven tion DETECTION ROADMAP ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON- NANOTECHNOLOGY FOR NUCLEAR NON- PROLIFERATION APPLICATIONS PROLIFERATION APPLICATIONS

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Page 1: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

ROADMAPROADMAP

NANOTECHNOLOGY FOR NUCLEAR NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONSNON-PROLIFERATION APPLICATIONS

Page 2: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

ROADMAPROADMAP

NANOTECHNOLOGY FOR NUCLEAR NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONSNON-PROLIFERATION APPLICATIONS

Technology Transfer

• RESEARCH AND DEVELOPMENT AREAS AND NEEDS

• IMPLEMENTATION STRATEGYStrategic Plan

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Technology Transfer

Development of R&D Priorities

Formation ofR&D Center of

Excellence

BiosystemsNovel

Approaches

Page 3: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Technology Transfer

• RESEARCH AND DEVELOPMENT AREAS AND NEEDS

• IMPLEMENTATION STRATEGYStrategic Plan

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Technology Transfer

Development of R&D Priorities

Formation ofR&D Center of

Excellence

BiosystemsNovel

Approaches

• RESEARCH AND DEVELOPMENT AREAS AND NEEDS

• IMPLEMENTATION STRATEGYStrategic Plan

Technology

TransferDevelopment of R&D Priorities

Formation ofR&D Center of

Excellence

ROADMAPROADMAP

Page 4: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION• RESEARCH AND DEVELOPMENT AREAS AND NEEDS

• IMPLEMENTATION STRATEGYStrategic Plan

Technology

TransferDevelopment of R&D Priorities

Formation ofR&D Center of

Excellence

ROADMAPROADMAP

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 5: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Layer-by-Layer Assembly

Molecular Recognition-Based Self-Assembly

Self-Assembly Monolayer

Nanoassembly by Step-Wise Polymerization

X-Ray Nanolithography

e-Beam Nanolitography

Nanoimprint Lithography

Molecular Imprinting

Electroless Deposition with Charged Nanoparticles

Nanofiltration

Chemical Solvation

Molecular Metal-Ion RecognitionResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Fabrication and Processes

Page 6: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Fabrication and Processes

Layer-by-Layer Assembly

Molecular Recognition-Based Self-Assembly

Self-Assembly Monolayer

Nanoassembly by Step-Wise Polymerization

X-Ray Nanolithography

e-Beam Nanolitography

Nanoimprint Lithography

Molecular Imprinting

Electroless Deposition with Charged Nanoparticles

Nanofiltration

Chemical Solvation

Molecular Metal-Ion Recognition

Page 7: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Fabrication and Processes (cont…)

Flame Aerosol Process

Plasma Process

Sol-Gel

Laser Ablation/Pulsed Laser Ablation

Precipitation Synthesis

Electrospinning

Hydrothermal/Solvothermal Processing

Nanoinfiltration

Ultrasonic Spray Pyrolysis

Transient Eutectic-Phase Process

Chemical Etching

Dry Etching

Anodization

Page 8: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Fabrication and Processes (cont…)

Grinding

Ion Exchange

Electrical Arc Discharge

Chemical Vapor Deposition

Metal Organic Vapor Phase Epitaxy

Molecular Beam Epitaxy

Solid-Vapor Phase Sublimation

Vapor-Solid Crystal Growth

Sputtering

Atomic Layer Deposition

Plasma-Enhanced/Laser-Focused Atomic Layer Deposition

Others ____________________________

Page 9: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Grinding

Ion Exchange

Electrical Arc Discharge

Chemical Vapor Deposition

Metal Organic Vapor Phase Epitaxy

Molecular Beam Epitaxy

Solid-Vapor Phase Sublimation

Vapor-Solid Crystal Growth

Sputtering

Atomic Layer Deposition

Plasma-Enhanced/Laser-Focused Atomic Layer Deposition

Others ____________________________ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and Processes (cont…)

Fabrication and

Processes

Page 10: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Nanoscale Semiconductor Detectors

Nano-Structured Scintillator Detectors

MEMS/NEMS Geiger Counters

Nano-Dust Gas Based Detectors

Nanocantilevers

Quantum Confinement-Based Devices

Molecular-Based Devices

Nanocapsules-Based Devices

Others ____________________________

Devices andSystem

Architecture

Devices and System Architecture

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 11: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Devices and System Architecture

Nanoscale Semiconductor Detectors

Nano-Structured Scintillator Detectors

MEMS/NEMS Geiger Counters

Nano-Dust Gas Based Detectors

Nanocantilevers

Quantum Confinement-Based Devices

Molecular-Based Devices

Nanocapsules-Based Devices

Others ____________________________

Page 12: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Nanoscale Semiconductor Detectors

Nano-Structured Scintillator Detectors

MEMS/NEMS Geiger Counters

Nano-Dust Gas Based Detectors

Nanocantilevers

Quantum Confinement-Based Devices

Molecular-Based Devices

Nanocapsules-Based Devices

Others ____________________________

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Devices andSystem

Architecture

Devices and System Architecture

Page 13: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Nanoparticles

Nanowires

Nanofibers

Nanobelts

Polymers

Semiconductors

Superconductors

Mesoporous and Nanoporous Materials

Nanofluids

Scintillator Nanomaterials

Others ____________________________

Novel Materials and Structures

Novel Materials and Structures

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Theory, Modeling and Simulation

Fabrication and

Processes

Page 14: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Novel Materials and Structures

Nanoparticles

Nanowires

Nanofibers

Nanobelts

Polymers

Semiconductors

Superconductors

Mesoporous and Nanoporous Materials

Nanofluids

Scintillator Nanomaterials

Others ____________________________

Page 15: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Nanoparticles

Nanowires

Nanofibers

Nanobelts

Polymers

Semiconductors

Superconductors

Mesoporous and Nanoporous Materials

Nanofluids

Scintillator Nanomaterials

Others ____________________________

Novel Materials and Structures

Novel Materials and Structures

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Theory, Modeling and Simulation

Fabrication and

Processes

Page 16: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Artificial Skin

Biosensors

Bio fuel-Cells

Bio-membranes

Bio-Reactors

Nuclear Virus Tagging

Others ____________________________

Biosystems

Biosystems

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 17: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Biosystems

Artificial Skin

Biosensors

Bio fuel-Cells

Bio-membranes

Bio-Reactors

Nuclear Virus Tagging

Others ____________________________

Page 18: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Artificial Skin

Biosensors

Bio fuel-Cells

Bio-membranes

Bio-Reactors

Nuclear Virus Tagging

Others ____________________________

Biosystems

Biosystems

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 19: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Scanning Electron Microscopy (SEM)

Transmission Electron Microscopy (TEM)

Atomic Force Microscopy (AFM)

Scanning Tunneling Microscopy (STM)

X-Ray Photoelectron Spectroscopy (XPS)

Thermogravimetric Analyzer (TGA)

Energy Dispersive X-Ray Spectroscopy (EDS)

Differential Thermal Analysis (DTA)

Differential Scanning Colorimetry (DSC)

Infra Red Spectroscopy (IR)

Visible Spectroscopy (VIS)

Ultra Violet Spectroscopy (UV)

Measurementsand

Characterization

Measurements and Characterization

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 20: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Measurements and Characterization

Scanning Electron Microscopy (SEM)

Transmission Electron Microscopy (TEM)

Atomic Force Microscopy (AFM)

Scanning Tunneling Microscopy (STM)

X-Ray Photoelectron Spectroscopy (XPS)

Thermogravimetric Analyzer (TGA)

Energy Dispersive X-Ray Spectroscopy (EDS)

Differential Thermal Analysis (DTA)

Differential Scanning Colorimetry (DSC)

Infra Red Spectroscopy (IR)

Visible Spectroscopy (VIS)

Ultra Violet Spectroscopy (UV)

Page 21: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Near Infrared Spectroscopy (NIR)

Mass Spectroscopy

X-Ray Diffraction (XRD)

Raman Spectroscopy

Piezoresponsive Force Microscopy (PRFM)

Magnetic Measurements (SQUID)

Nuclear Force Measurements

Small-Angle Scattering (X-ray or Neutron)

Reflectivity

Spin-Polarization Studies with Neutrons

X-ray Absorption Spectroscopy (EXAFS and XANES)

Tomography

Measurements and Characterization (cont…)

Page 22: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Measurements and Characterization (cont…)

Confocal Microscope

Pore Size Analyzer

gas/liquid Chromatography

Crystal Microbalance Technique

Circular Dichroism Spectroscopy (CD)

Fourier Transform Infrared Spectroscopy (FTIS)

Photoreflectance Spectroscopy

Nuclear Magnetic Resonance (NMR)

Others ____________________________

Page 23: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Confocal Microscope

Pore Size Analyzer

gas/liquid Chromatography

Crystal Microbalance Technique

Circular Dichroism Spectroscopy (CD)

Fourier Transform Infrared Spectroscopy (FTIS)

Photoreflectance Spectroscopy

Nuclear Magnetic Resonance (NMR)

Others ____________________________

Measurementsand

Characterization

Measurements and Characterization (cont…)

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 24: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Ab initio

Semi-Empirical

Density Functional Theory

Molecular Dynamics

Monte-Carlo

Cell Simulator

Membrane Computing

Finite Elements

Others ____________________________

Theory, Modeling and Simulation

Theory, Modeling and Simulation

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Fabrication and

Processes

Page 25: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Theory, Modeling and Simulation

Ab initio

Semi-Empirical

Density Functional Theory

Molecular Dynamics

Monte-Carlo

Cell Simulator

Membrane Computing

Finite Elements

Others ____________________________

Page 26: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Ab initio

Semi-Empirical

Density Functional Theory

Molecular Dynamics

Monte-Carlo

Cell Simulator

Membrane Computing

Finite Elements

Others ____________________________

Theory, Modeling and Simulation

Theory, Modeling and Simulation

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Fabrication and

Processes

Page 27: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

K-16

Graduate Education

Workforce Training

Training for Military and Civilian Personnel in Risk Zones

Community Outreach

University/Industry/Government Collaborations

Intellectual Property

Others ____________________________

Technology Transfer

Technology Transfer

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 28: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Technology Transfer

K-16

Graduate Education

Workforce Training

Training for Military and Civilian Personnel in Risk Zones

Community Outreach

University/Industry/Government Collaborations

Intellectual Property

Others ____________________________

Page 29: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

K-16

Graduate Education

Workforce Training

Training for Military and Civilian Personnel in Risk Zones

Community Outreach

University/Industry/Government Collaborations

Intellectual Property

Others ____________________________

Technology Transfer

Technology Transfer

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 30: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Nanoencapsulation

Bio-Inspired Methods

Others ____________________________

Novel Approaches

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Novel Approaches

Page 31: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Novel Approaches

Nanoencapsulation

Bio-Inspired Methods

Others ____________________________

Page 32: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Nanoencapsulation

Bio-Inspired Methods

Others ____________________________

Novel Approaches

Novel Approaches

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 33: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

DETECTION NEEDS

Conventional Detection System Miniaturization

Sample Collection and Preparation

Ultra-Sensitive Detection Approaches

Shielded Nuclear Materials

Neutron Detection

Weapons-Grade Fissionables

Nuclear Reactor Safety Sensors

Production and Proliferation Tracking Devices

Field Detection Devices

Smart Networked Radiation/Isotopes Sensors

Radioisotope-Free Fabrication Materials

Data Mining

Others ____________________________

Detection(Isotopes and

Radiation)

Detection (Isotopes and Radiation)

ResponseTreatment

Protection Prevention

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 34: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Detection (Isotopes and Radiation)

DETECTION NEEDS

Conventional Detection System Miniaturization

Sample Collection and Preparation

Ultra-Sensitive Detection Approaches

Shielded Nuclear Materials

Neutron Detection

Weapons-Grade Fissionables

Nuclear Reactor Safety Sensors

Production and Proliferation Tracking Devices

Field Detection Devices

Smart Networked Radiation/Isotopes Sensors

Radioisotope-Free Fabrication Materials

Data Mining

Others ____________________________

Page 35: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Detection (Isotopes and Radiation)

DETECTION NEEDS

Conventional Detection System Miniaturization

Sample Collection and Preparation

Ultra-Sensitive Detection Approaches

Shielded Nuclear Materials

Neutron Detection

Weapons-Grade Fissionables

Nuclear Reactor Safety Sensors

Production and Proliferation Tracking Devices

Field Detection Devices

Smart Networked Radiation/Isotopes Sensors

Radioisotope-Free Fabrication Materials

Data Mining

Others ____________________________

Detection(Isotopes and

Radiation)

ResponseTreatment

Protection Prevention

Nuclear Power

Radioisotopes Collection and

Separation

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

NANOTECHNOLOGY

Page 36: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Chemical Complexation

Nano-Filtration

Composite Materials

Others ____________________________

Radioisotopes Collection and

Separation

Radioisotopes Collection and Separation

Detection(Isotopes and

Radiation)

ResponseTreatment

Protection Prevention

Nuclear Power

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 37: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Radioisotopes Collection and Separation

Chemical Complexation

Nano-Filtration

Composite Materials

Others ____________________________

Page 38: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Chemical Complexation

Nano-Filtration

Composite Materials

Others ____________________________

Radioisotopes Collection and

Separation

Radioisotopes Collection and Separation

Detection(Isotopes and

Radiation)

ResponseTreatment

Protection Prevention

Nuclear Power

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 39: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION• RESEARCH AND DEVELOPMENT AREAS AND NEEDS

• IMPLEMENTATION STRATEGYStrategic Plan

Technology

TransferDevelopment of R&D Priorities

Formation ofR&D Center of

Excellence

ROADMAPROADMAP

ResponseTreatment

Protection Prevention

Detection(Isotopes and

Radiation)

Nuclear Power

Radioisotopes Collection and

Separation

NANOTECHNOLOGY

for

NUCLEAR NON-PROLIFERATION

Technology Transfer

Novel Approaches

Biosystems

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Page 40: ROADMAP NANOTECHNOLOGY FOR NUCLEAR NON-PROLIFERATION APPLICATIONS

Louisiana Tech UniversityLouisiana Tech University

ProtectionPrevention

DETECTION

ProtectionPrevention

DETECTION

Strategic Plan

• IMPLEMENTATION STRATEGY

Technology Transfer

Development of R&D Priorities

Formation ofR&D Center of

Excellence

ROADMAPROADMAP

• RESEARCH AND DEVELOPMENT AREAS AND NEEDS

Technology Transfer

Measurementsand

Characterization

Devices andSystem

Architecture

Novel Materials and Structures

Theory, Modeling and Simulation

Fabrication and

Processes

Biosystems Novel Approaches