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証券コード 4901 Strategy for Functional Material Development in FUJIFILM - Global competency strategy for business innovation in Functional Material Industry - Sep. 24, 2013 FUJIFILM Corporation

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Page 1: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

証券コード

4901

Strategy for Functional Material Development in FUJIFILM

- Global competency strategy for business innovationin Functional Material Industry -

Sep. 24, 2013FUJIFILM Corporation

Page 2: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

Development Strategy of Functional Materials in Japan

2Tremblay, J-F., C & En, 91(23), 2013, 10-14

In Japan, focus on users’ needs rather than gee-whiz technology is the key to success for ADVANCED MATERIALS FIRMS

Success of Japanese firms in functional materials attracts attentions. FUJIFILM Corp. was introduced as an example of the Functional Materials Firms.

Page 3: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

Wide variety of technologies construct color films

3

Color film consists of 20 layers precisely coated on 180micron base film

Cross section of Fujicolor HR-400

Undeveloped Total thickness :~20μm

Layer number :16~20 layers

Layer thickness :~1.2 μm

Precisely designed AgX grains act as photo-sensor

Over 100 organic compounds for excellent image

Many sophisticated technologies have been developed to attain high speed image capturing and fine image reproduction.

After development

Color image layers

Base film

Page 4: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

Research direction of toward new Business Portfolio

Implementation ofDigital Technology and IT

Applying to Life Science

Utilization of Chemical technologiesImaging & Printing

Document Optical Devices

Graphic arts

Electronic Imaging Imaging

Healthcare Skincare, Supplement Medicines

Medical SystemsDiagnostic ImagingExternal Diagnosis

Highly Functional MaterialsFlat panel display materials Recording Media

Photo resistFine ChemicalsInkjet Ink

New Functional Films (environmental, energy, electronics)

To promote growth by contributing to the quality of life of the people of the world

Inorganic Chemistry

Optics Analytical technology

Imaging

Biochemistry

Software Mechanics and Electronics

Film formation and processing Organic Chemistry

Fundamental Technologies of the Fujifilm GroupFundamental Technologies of the Fujifilm Group

Page 5: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

Photographic technology applicationSilver halide material utilization

Molecular design technology applicationOptical function design

Nano-photonics applicationStructural function design

Industrial IJ SystemFrom Precise printing into Material Deposition

Life Science & PharmaceuticalsFunctional Materials for Human Healthcare

Fujifilm’s Challenge to Versatile Functional Materials

Page 6: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

Functional film based on photography

6

EXCLEAR REXCLEAR R

To give surface conductivity on transparent film, fine Ag mesh pattern is formed on EXCLEAR using photographic process.

500μm

EXCLEAR R – transparent conductive film

Using light to form Ag mesh pattern, EXCLEAR can provide preferable shape of pattern.

500μm

Flexible Light Emitting Device using EXCLEAR as a transparent sheet electrode

EXCLEAR exhibits higher conductivity with excellent transparency compared to conventional ITO film.

70

75

80

85

90

95

100

1 10 100 1000

シート抵抗(Ω/□)

透過率(%)

(フィル

ム単体)

EXCLEAR

ITO フィルム

Sheet resistance (Ω/□)

filmTran

smitt

ance

(%)

70

75

80

85

90

95

100

1 10 100 1000

シート抵抗(Ω/□)

透過率(%)

(フィル

ム単体)

EXCLEAR

ITO フィルム

70

75

80

85

90

95

100

1 10 100 1000

シート抵抗(Ω/□)

透過率(%)

(フィル

ム単体)

EXCLEAR

ITO フィルム

Sheet resistance (Ω/□)

filmTran

smitt

ance

(%)

○○

Page 7: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

LCD consists of many functional films

7

Color filter

LC layerTFT

Alignment layer Transparent electrode

BR G

LC molecule

Color filter

LC layerTFT

Alignment layer Transparent electrode

BR G

LC molecule

Core construction of LCD

Glass substrate

Glass substrate

~200μm

Protective TAC film

Polarizingfilm

Polarizingfilm

Adhesive

Adhesive

~200μm

~400μm

~400μm

~ 5μm

Anti reflection filmPolarizer (polyiodide ion + PVA)

Retardation film

Polarizer (polyiodide ion + PVA)Retardation film

LC Cell

Glass substrate

Glass substrate

~200μm

Protective TAC film

Polarizingfilm

Polarizingfilm

Adhesive

Adhesive

~200μm

~400μm

~400μm

~ 5μm

Anti reflection filmPolarizer (polyiodide ion + PVA)

Retardation film

Polarizer (polyiodide ion + PVA)Retardation film

LC Cell

Cross-section of LCD panel

~0.2mm

~3.0mm

~0.2mm

~1.2mm

Light enhancing filmDiffuser film

LED Light guide

Reflective film

~0.2mm

~3.0mm

~0.2mm

~1.2mm

Light enhancing filmDiffuser film

LED Light guide

Reflective film

Components of LCD monitor

LCD panel

Liquid Crystal Display (LCD) is the most popular device for color monitor

Page 8: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

Optical film example for LCD – WV film

8

With WV film Without WV film

WV R film widens the viewing angle of LCD

R

Page 9: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

Green technology based on metamaterial

9

1um1um

Nano Silver Pavement (NASIP)Silver Nano-disc

120~150nm in diameter

~10nmIn thickness

NASIP can selectively reflect infrared light

infrared(heat wave)

visible light

radio wave

Room insideOutside

NASIP on the window

Heat insulation of sunlight

0

20

40

60

80

100

300 700 1100 1500 1900 2300

[%]

λ [nm]

Transmittance

Reflectance

Spectral properties

Visible Infrared

Near IR

Visible

Page 10: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

Industrial Applications of Inkjet systems

FPD MEMS

Patterning Functional materials would be needed for Industrial ApplicationsAdvantages of IJ : “Deposit materials of needed amount at needed position”

Jet Press 720the World’s First Single-Pass, High-Speed,

Large Format Size Inkjet Printingat High Resolutions of 1200 dpi.

Industrial Inkjet Printer & Head

Apply

Life science Micro chemical

Printable Electronics

Material Deposition(MD)

Graphic

Page 11: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

Nano-Astaxanthin Application to Skin-care Cosmetics

FUJIFILM

Nano dispersion

0

10

20

30

40

50

60

70

80

90

100

0 5 10 15 20 25 30摂取後経過時間(時間)

ナノ微粒子されたアスタキサンチン(110nm)

比較のエマルション製剤(250nm)

アスタキサンチン油性溶液

Conventional

dispersion

■ ナノアスタキサンチン■ 比較乳化物

(平均250nmφ)

熱安定性● nano-astaxanthin● control(250nmφ)● astaxanthin oil solution

Astalift series

Intake elapsed time (hr)

AUC

of a

stax

anth

ine

(a.u

.)

Astaxanthin

Thermal stability

elapsed time (day/50 degree c)

Rem

aini

ng A

stax

anth

ine

(%)

Conventional dispersion

FUJIFILMNano dispersion

Nano AstaxanthinControl dispersion

(ave. 250 nmφ)

Page 12: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

Development Strategy in Pharmaceutical area

12

Collagen application

Materials for regenerative medicine

Molecular design synthesis

Proprietary nano-technology

Low molecule medicine

FUJIFILM’sCore technologies

Armedantibody drug

AUC Comparison

0

5

10

15

20

25

30

35

CommerciallyAvailable

NOF Corp.'sFormula

FF FTD Tech.

AUC

0-2

4hrs

[μg*

hr/m

l] ①

③②①

Drug formulation technology

1mm

Bio, BS drugmanufacturing

Analytical Science

タンパク質

化合物

Film, Membrane Sponge Hydro gel

RCP Spheroid

Diagnostic Imaging

Highly reliable manufacturing technology

Protein

Active compound

Page 13: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

Electronic device

AutomobileAirplane

EnergyEnvironment

Drug Life Science

Food production

Small molecule drug, DDS

Regenerative Medicine

Functional materials for Flat panel Display, Smartphone

Lightweight materials

Battery materials

Photo voltaic, Photo catalyst CO2 Separation/Fixation Biomass

Water Purification Plant factory

Chemistry will continue to play more and more

important role in the future of industry

Chemistry will continue to play more and more

important role in the future of industry

The future of industry driven by Chemistry

Page 14: Strategy for Functional Material Development in FUJIFILM · 2017-09-29 · Development Strategy of Functional Materials in Japan 2 Tremblay, J-F., C & En, 91(23), 2013, 10-14 In Japan,

14

Green Cycle for the Future

nanotech award-winning2011, 2012, 2013

Emotion

Wellness

AmbientJoyful life with

imaging product evolution

Healthy life with health-care innovation

Green sustainable Society with functional materials innovation

Sustainable societyGreen Energy

Prevent warmingEnergy efficiency

Core technologybased on Photo-

graphy