A LTM story in nanotechnology

A LTM story in nanotechnology D. Peyrade CNRS Research Director Team leader Micronanotechnology for Health Co-founder of Smart Force Technologies © L...
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A LTM story in nanotechnology

D. Peyrade CNRS Research Director Team leader Micronanotechnology for Health Co-founder of Smart Force Technologies © LTM-CNRS c/o CEA-LETI, Grenoble David PEYRADE | [email protected]

J. Cordeiro Président, co-founder Smart Force Technologies © SAS www.smartforcetechnologies.com ARC6 1 april 2016 1

Outline • LTM : The beginning of the story…. • Smart Force Technologies ©

• The future for LTM & SFT

David PEYRADE | [email protected]

ARC6 1 april 2016 2

The boom of colloidal matter •

Mastering chemical synthesis - Complexity of materials (low cost)



Physics properties are specifics - S/V – confinement elect/photon



How to integrate this material?

Miroelectronic technologie not suitables Litho, etch, deposition… Bawendi

-

Broad range of application domains Particles brownian motion

Strategies to exploit particles physical properties Interfaces  Assembly

Outside forces Manipulate 3 FGRAD  V opt/ m Kopt / CM E 2 2 Particle /Milieu polarisable Champ électrique alternatif / Electromag. Attraction/Repulsion

t=10s T=25°C

Attraction

eau

Particule PS 500 nm Particules 1 nm -10 µm Force [10 nN …pN]

Hydrodynamic, Capillary, gravitationnal David PEYRADE | [email protected]

Electrocinetic

Optic ARC6 1 april 2016 3

Thermodynamic assembly : From physics to technology Innovations

Thermodynamic

Illustrations Goutte Goutte

Q ~100ml/min 10 µm 10 µm

Substrat Substrat

-Exploit hydrodynamic force  Aspiration flux -Maximise capillary forces  surface functionnalisation -Mastering the front displacement  fluidic cell

2 Patents : Principle/cell

Préconcentration

Assemblage 5 µm

1µm Polystyrène

3 PhDs, 3 ANR, 11 RICL

Filling factor>99%

>1 Million /cm2

1 European demonstration (2006) GenericTechnology (material/substrate) to integrate collectivly colloidal particles Thermodynamic assembly: An elementary technology inserted in micro-nanotechnologies (litho, etch, NIL…) David PEYRADE | [email protected]

ARC6 1 april 2016 4

Application domains Particles size: 5 nm à 10 µm

TICs

Plasmonic

Photonic

Magnétism

1 µm

200 nm

Nanoantenna (dimers/chains)

Guiding/confinement focalisation sub-l

Plasmons 3D

Coll. CEMES ITODYS, ESPCI …

Biology

5nm domains

White light emitters

2 ANR 11 RICL (APL, JVSTB, J. Phys Chem C…) 2 Patents 2 thèses

Molecular scale (nm)

Cellular scale(µm) S. epidermidis

15 µm

100 nm

Coll. LMGP

DNA combing

5 µm Coll. Clinatec

Exosomes (illness sentinel)

3 µm Coll. LETI

Bacteria 1 ANR 1 Carnot, 3RICL, 1 thèse

ARC6 1 april 2016 5

Industrial transfert • SMART FORCE : Integration of colloidal particles on-chip From fundamental research to a commercial solution Fundamental research

Concept proof /Prototype

TRL 1

Operationnal system

Commercialization (LTM)

TRL 7

TRL 9

TRL 3

Unit

X3

X2

2011

ISA

Consommables

Microfluidic chamber

2006

1st sell

Functionnalised substrates

3 PhDs, 2 ANRs,11 RICL,2 Patents,3 prototypes

Stand conference

2015

• The « First step" team 2012-2015

D. Peyrade CNRS, LTM

M. Zelsmann CNRS,LTM

E. Picard CEA

K. Berton, CNRS,LTM

K. Berton, doct.,LTM

Human adventure (facts, skills…) Entrepreneurial model : organic growth David PEYRADE | [email protected]

ARC6 1 april 2016 6

SMART FORCE: THE SOLUTION

David PEYRADE | [email protected]

ARC6 1 april 2016 7

SMART FORCE SOLUTION Research activity Successfull companies experience : attocube Imina … Prototype  commercial product Subcontractors : Atelier chartreuse Supernova… Intelligent microfluidic head

Marketing: product brochure ..booth Key opinion leader : conferences…

SMART FORCE

David PEYRADE | [email protected]

ARC6 1 april 2016 8

PROMOTING SMART FORCE SOLUTION

Salon Nanotech, Japon 2014

Lyon, March 2015 MNE 2014, Lausanne

Meet new ecosystem : academic collaborators, distributors, start-up, industrial First sell  Ready for the creation of Smart Force Technologies David PEYRADE | [email protected]

ARC6 1 april 2016 9

Operationnal team SATT Grenoble

Julien CORDEIRO, PhD 2010-2013: Thèse LTM CFA, Optique, Prototypage 2012: Challenge First Step CEA 2014-2015: Projet Smart Force

Incubation: oct 2015

Olivier LECARME, PhD 2008-2011: Thèse LTM CFA, Optique, Informatique 2012-2014: Post-doc Sapporo Optique, Cellule solaires 2014-2015: Projet Smart Force

Smart Force Technologies is a young company born from French laboratories LTM-CNRS & CEA Smart Force Technologies © SAS www.smartforcetechnologies.com

Scientific advisor D. Peyrade LTM-CNRS E. Picard CEA

Julien CORDEIRO | [email protected] David PEYRADE | [email protected] www.smartforcetechnologies.com

ARC6 1 april 2016 10

Natural evaporation

Controlled evaporation

1 µm

-

1 µm

Predetermined and reproductible deposition

Individual caracterisation of structural and physico-chemical properties of nanoparticles

Random deposition  agregates = “Finding a needle in a haystack” Julien CORDEIRO | [email protected] David PEYRADE | [email protected] www.smartforcetechnologies.com

Heterogen material integration

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Smart Force Unit

Smart Force Kit

Microfluidic cells

Patent n° 14 54166 Product Key Features

Software

nm scale resolution NanoMicrometric Assembly Dynamic visualisation 1 cm2 chip surface 2D and 3D assembly Portable system

Assembly system

Fisrt customer delivery Julien CORDEIRO | [email protected] David PEYRADE | [email protected] www.smartforcetechnologies.com

KTH Royal Institut of Technology Stockholm, Sweden ARC6 1 april 2016 12

Products Roadmap 2016

2017

2018

OFFER SMART FORCE

OFFER SMART PRINT

OFFER SMART FORCE PROD.

Equipment: 40k€ Consummable: 1k€ Prestation: 2k€

Equipment: 15k€ Consumable: 1k€

RESEARCH LAB EDUCATION 10 000 worldwide

Equipment: 80k€

INDUSTRIALS 14 000 affiliés nano  Telecommunication  Energy  Health

Julien CORDEIRO | [email protected] David PEYRADE | [email protected] www.smartforcetechnologies.com

ARC6 1 april 2016 13

INNOVATIVE MICROBEAD BASED TECHNOLOGY FOR ANTIBODIES IGE DETECTION Microbead based IgE antibody detection by magnetic separation

A. Leonard (PhD)

Microbead PS 10μm Primary Antibody Magnetic microbead 4,5μmSecondary antibody

PS-IgE

Mag-Anti-IgE PS-COOH

Microbead complex

PS-IgE PS-COOH

No filtering 50/50

National research program

LTM Grenoble) Immunolab (Lyon) Smart Force Technologies ©

Magnetic fishing 90/10

AAP 2015 Coord. LTM

Innovative microbead technology for allergy diagnosis

ARC6 1 april 2016 14

ASSEMBLY FOR MOLECULAR DIAGNOSIS Microbeads technology

Magnetic fishing

Microbilles

Polystyrene beads (10µm) IgE

Biochip

50 µm 1 mm

Magnetic bead Anti-IgE

Sensitivity , integration, cost

Thermodynamic assembly

Reactive beads collection IgE

Lens-free imaging analysis

FOV 20 mm X 15 mm / Resolution 5 µm

Assemblage (billes + IgE)

Allergens tests – Patient serum ISAC Chip

Food Insects Drugs

Ara h2 Arachid validation

Pollen & … plants Coll. Pharmaciens

Partners LTM –coord (Grenoble) Immunolab hospital (Lyon) AOMC-Pharmacology (Toulouse) CEA INAC (Grenoble) Smart Froce Technologies © (Grenoble)

Test on patient serum (3000 human allergens / cross-allergy)

Synergy of technologies Microbeads solutions for molecular diagnosis  Health applications: allergy, oncology…

ARC6 1 april 2016 15

Conclusion • A LTM sucessfull story in nanotechnology • Human adventure • Explore an entrepeunarial model (organic – lab sell ) - The spin-off company Smart force technology © is launched • Institutional support (CEA CNRS LTM INAC SATT) • Ride an academic-industrial partnership Transfert new technologies LTM/MNH

Health Applications Synergy

Company students Assembly

2015

David PEYRADE | [email protected]

Lithography

2016

Imaging

Allergy diagnosis

2018 ARC6 1 april 2016 16

David PEYRADE | [email protected]

ARC6 1 april 2016 17

From prototype to final product Le prototype

Le produit final

Design du prototype Sous-traitance : Atelier de Chartreuse

+

Cellules microfluidiques Fabrication en interne du prototype David PEYRADE | [email protected]

Brevet FR14 54166 CEA/CNRS/UJF ARC6 1 april 2016 18