Opportunity Assessment in the Fuel Cell Market

Opportunity Assessment in the Fuel Cell Market

A global leader in chemicals manufacturing

The Ask

The client was interested in understanding opportunities of their products and services in coating of rare metals in the energy storage market, particularly Platinum for fuel cells.
Key questions:

  • What product or components can the client introduce in the market?

  • Is there any need for modification in the existing product segment to make it suitable for target market?

  • What would be the best path forward – R&D, licensing, or strategic alliance?

Our Solution

01.
Market Analysis
  • Analyze technology domain to understand the IP landscape along-with identification of key players and their respective focus area

  • Understand the industry value chain and map key players in the market with respect to their role

01.
Market Analysis
  • Analyze technology domain to understand the IP landscape along-with identification of key players and their respective focus area

  • Understand the industry value chain and map key players in the market with respect to their role

01.
Market Analysis
  • Analyze technology domain to understand the IP landscape along-with identification of key players and their respective focus area

  • Understand the industry value chain and map key players in the market with respect to their role

02.
Technology Analysis
  • Conduct a detailed technology comparison to shortlist most promising technologies based on qualitative and quantitative parameters

  • Perform cost analysis (qualitative) of the technologies with respect to Fuel Cell market

02.
Technology Analysis
  • Conduct a detailed technology comparison to shortlist most promising technologies based on qualitative and quantitative parameters

  • Perform cost analysis (qualitative) of the technologies with respect to Fuel Cell market

02.
Technology Analysis
  • Conduct a detailed technology comparison to shortlist most promising technologies based on qualitative and quantitative parameters

  • Perform cost analysis (qualitative) of the technologies with respect to Fuel Cell market

03.
Feasibility Analysis
  • Sketch experimental set-up for determining feasibility analysis of shortlisted technologies based on process requirements, risks involved, complexity, and investment and capability requirements, amongst others

03.
Feasibility Analysis
  • Sketch experimental set-up for determining feasibility analysis of shortlisted technologies based on process requirements, risks involved, complexity, and investment and capability requirements, amongst others

03.
Feasibility Analysis
  • Sketch experimental set-up for determining feasibility analysis of shortlisted technologies based on process requirements, risks involved, complexity, and investment and capability requirements, amongst others

Sample Findings

GREMI laboratory at University of Orléans
10 µg/cm2

PEM fuel cell electrodes with an ultra-low Platinum content fabricated using magnetron sputtering of Platinum on a commercial E-Tek® uncatalyzed gas diffusion layer

GREMI laboratory at University of Orléans
10 µg/cm2

PEM fuel cell electrodes with an ultra-low Platinum content fabricated using magnetron sputtering of Platinum on a commercial E-Tek® uncatalyzed gas diffusion layer

GREMI laboratory at University of Orléans
10 µg/cm2

PEM fuel cell electrodes with an ultra-low Platinum content fabricated using magnetron sputtering of Platinum on a commercial E-Tek® uncatalyzed gas diffusion layer

The Eindhoven University of Technology
20x

Storing energy in hydrogen 20 times more effective using Platinum-nickel catalyst - catalyst with hollow nanocages of an alloy of Nickel and Platinum

The Eindhoven University of Technology
20x

Storing energy in hydrogen 20 times more effective using Platinum-nickel catalyst - catalyst with hollow nanocages of an alloy of Nickel and Platinum

The Eindhoven University of Technology
20x

Storing energy in hydrogen 20 times more effective using Platinum-nickel catalyst - catalyst with hollow nanocages of an alloy of Nickel and Platinum

Low-cost aternative catalysts
PANI

Polyaniline-derived Non-Precious Catalyst for the Polymer Electrolyte Fuel Cell Cathode

Low-cost aternative catalysts
PANI

Polyaniline-derived Non-Precious Catalyst for the Polymer Electrolyte Fuel Cell Cathode

Low-cost aternative catalysts
PANI

Polyaniline-derived Non-Precious Catalyst for the Polymer Electrolyte Fuel Cell Cathode

Sample Findings

GREMI laboratory at University of Orléans
10 µg/cm2

PEM fuel cell electrodes with an ultra-low Platinum content fabricated using magnetron sputtering of Platinum on a commercial E-Tek® uncatalyzed gas diffusion layer

The Eindhoven University of Technology
20x

Storing energy in hydrogen 20 times more effective using Platinum-nickel catalyst - catalyst with hollow nanocages of an alloy of Nickel and Platinum

Low-cost aternative catalysts
PANI

Polyaniline-derived Non-Precious Catalyst for the Polymer Electrolyte Fuel Cell Cathode

Impact

Efficiency parameters along with other important data points were extracted to forecast adoption probability
  • ALD process was adopted to reduce platinum

  • Cost benefit analysis
    Existing[Material (x) + Manufacturing (y)] > Proposed [Material (x1) + Manufacturing (y1) ]

Efficiency parameters along with other important data points were extracted to forecast adoption probability
  • ALD process was adopted to reduce platinum

  • Cost benefit analysis
    Existing[Material (x) + Manufacturing (y)] > Proposed [Material (x1) + Manufacturing (y1) ]

Efficiency parameters along with other important data points were extracted to forecast adoption probability
  • ALD process was adopted to reduce platinum

  • Cost benefit analysis
    Existing[Material (x) + Manufacturing (y)] > Proposed [Material (x1) + Manufacturing (y1) ]

Impact

Efficiency parameters along with other important data points were extracted to forecast adoption probability
  • ALD process was adopted to reduce platinum

  • Cost benefit analysis
    Existing[Material (x) + Manufacturing (y)] > Proposed [Material (x1) + Manufacturing (y1) ]

United Kingdom

lota Analytics UK Limited

4 King's Bench Walk,

London EC4Y 7DL

United Kingdom

India

lota Analytics Private Limited 1-8 Chandigarh Technology Park, Chandigarh - 160003 India

United States

Iota Analytics Inc.

8800 Roswell Road, Bldg. C,
Suite 230, Atlanta, GA, 30350
United States

© 2024 Iota Analytics. All rights reserved.

United Kingdom

lota Analytics UK Limited

4 King's Bench Walk,

London EC4Y 7DL

United Kingdom

India

lota Analytics Private Limited 1-8 Chandigarh Technology Park, Chandigarh - 160003 India

United States

Iota Analytics Inc.

8800 Roswell Road, Bldg. C,
Suite 230, Atlanta, GA, 30350
United States

© 2024 Iota Analytics. All rights reserved.

United Kingdom

lota Analytics UK Limited

4 King's Bench Walk,

London EC4Y 7DL

United Kingdom

India

lota Analytics Private Limited 1-8 Chandigarh Technology Park, Chandigarh - 160003 India

United States

Iota Analytics Inc.

8800 Roswell Road, Bldg. C,
Suite 230, Atlanta, GA, 30350
United States

© 2024 Iota Analytics. All rights reserved.