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Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support Underwater Unexploded Ordnance (UUXO) Ops Friday, 10 Oct Hilton Hawaiian Village, Waikiki

Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

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Page 1: Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

Nanoparticle Chemical Sensors for UUXO Detection

Christian Schoen, PhDVP CTO

Concurrent Analytical Inc.

Partnership Workshop: Robotic Technology To Support Underwater Unexploded Ordnance (UUXO) Ops

Friday, 10 Oct Hilton Hawaiian Village, Waikiki

Page 2: Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

CEROS Funded Effort

• In conjunction with Sea Engineering, funded by CEROS to develop UUXO detection systems

• Kaho’olawe coast

Page 3: Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

Define Goals• Analyzed seawater off

Kaho’olawe• Proximal to leaky

explosive– Was able to measure 40

ppm close, 1 ppm @ 5 meters

– 1 ppt @ 1000 meters?• Chemical radiation from

explosives does not occur in a hemispherical pattern

UUXO plume

Page 4: Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

How sensitive is this?

• Sharks detect blood in seawater at 100 ppmillion

• 1 ppm = 1 drop in 50 liters

Page 5: Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

Comparison

• One part per trillion (1 ppt) is a proportion equivalent to one drop of water diluted into twenty olympic size swimming pools

Page 6: Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

Detection System Requirements

• Extremely sensitive (~ppt)• Fast (seconds)• Corrosion resistant• Biofouling resistant• Low power consuming/ remote stand alone operation• Directional?

Page 7: Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

Solution: Optical Transducer• Optical transducer based on antibody/antigen mechanisms• Benefits:

– Antibody/antigen interaction is very sensitive (used in diagnostic assays at similar sensitivity requirements)

– Optical systems can be made to be robust in ocean environments

– Optical systems can be made to be remotely operable/low power

• Disadvantages:– Not directional – passive system

UUXOOptical Transducer

Page 8: Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

Gold Nanorods Geometrically-tunable

plasmon resonance throughout visible/NIR

Highly monodisperse, scalable manufacturing method

Potential as multimodal agents for sensors

Polymer coated gold is extremely robust in corrosive environments

Page 10: Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

How Sensitive/Selective?

• Work to ppt • Using Raman labels is 1,000,000x better• Can work with multiple target concurrently• Problem:

Page 11: Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

SprayjetTM Solution

Page 12: Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

• Current SOTA is 30 minutes to 2 days• For ppt, sprayjet can work in a few seconds at many

ml per sec.

How much quicker?

Page 13: Nanoparticle Chemical Sensors for UUXO Detection Christian Schoen, PhD VP CTO Concurrent Analytical Inc. Partnership Workshop: Robotic Technology To Support

Conclusion

• Optical Transducers, particularly plasmonic gold nanorods, can be used as a robust sensor for UUXOs