Company Deck|Ver. 2026
Materials discovery,
redesigned at the nanoscale.
3DC, the world’s first producer of nano-architected carbon at industrial scale.
Company Deck|Ver. 2026
3DC, the world’s first producer of nano-architected carbon at industrial scale.
Our flag
In 2014, Professor Hirotomo Nishihara of Tohoku University invented Graphene MesoSponge® (GMS), the world’s first carbon material with a designable nanostructure.
Academia and industry alike rated it highly. Yet as Japan’s materials industry cut back on R&D and capital investment, GMS sat dormant as a seed technology for eight years.
3DC was founded in 2022 by Nishihara, the inventor, and Kuroda — who brought experience from a major materials manufacturer and venture capital — to take on the challenge no one else would.
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Contents
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Mission, vision and the people behind 3DC
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Our mission
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Our vision
= Batteries as a shared asset for people and the planet
Design the optimal structure from the nanoscale up, to meet the requirements of the world’s leading battery manufacturers
Produce every commercialized design at industrial scale, through a single proprietary process
Push the performance limits of batteries on both fronts — materials and manufacturing
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Company profile
The GMS mass-production plant under construction (Gifu Plant)
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Traction
6.0B JPY
Total capital raised
Equity 2.89B / grants 3.11B
45
Employees
As of August 2026
120
Companies supplied with GMS
Since the Gifu plant started up in February 2024
100kg/yr
Current production capacity
An unusual scale for an advanced nanomaterial
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Origin
2014
Professor Nishihara of Tohoku University invented Graphene MesoSponge® (GMS) through joint research with a major Japanese OEM. Academia and industry alike recognized its distinctive performance and tunability.
2014–2022
No company committed to the required capital investment or process-development work, because of the risk of scaling up. An excellent invention stayed inside the laboratory.
2022
Kuroda, then at an independent VC, met Professor Nishihara. They agreed on one thing — that a new material developed in Japan should be the first in the world brought to mass production by a Japanese company — and founded 3DC.
Taking on the risk no one else would is itself the barrier to entry.
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Leadership
Representative Director, CEO
Nitto Denko
Samurai Incubate
Representative Director, CSO
Professor, Tohoku University
Inventor of GMS
CRO / Revenue
Nitto Denko
Head of startup business
CTO / Technology
Sony Energy Devices
Samsung SDI
Panasonic Energy
CMO / Manufacturing
Toyo Ink (now artience)
Former overseas plant manager
CFO / Finance
SMBC Nikko Securities
McKinsey & Company
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Where batteries hit their limit
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Energy density and cycle life are subject to a trade-off, and cell design alone cannot improve both at the same time.
The history of battery development is a succession of innovations in electrode materials, in order to lift both at once.
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The bottleneck
Energy density
Raising the active material content or the coating weight makes it harder for electrons and ions to move.
Rate
Faster charging and discharging require more electron- and ion-conduction pathways — but adding conductive additive reduces the fraction of active material.
Cycle life
Expansion and contraction during cycling breaks down the electrode. With silicon anodes the expansion is an order of magnitude larger.
All three come down to one question: how electrons and ions move inside the electrode
→ Change the structure of the carbon that forms the conductive network, and there is room to optimize all three at once.
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Primer
An electrode consists of active material, binder and conductive additive. The additive links the active particles and forms electron-conduction pathways — a small amount of carbon.
Current collector
SO WHAT
It is only a few percent of the electrode.
But if it becomes the bottleneck,
no active material, however good, will perform.
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The limit
Commodity, low cost
Point contacts break the conductive path
Highly conductive, high cost
They bundle easily and are hard to disperse
Structure by design
Structure carries electrons, pores carry ions
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Market shift
LFP, dry electrodes, silicon anodes. The three currents moving the market today all hinge on the conductive additive.
Share expanding, led by Chinese and Korean makers.
What it demands
The cathode itself conducts poorly, so both electronic and ionic conduction are required.
Solvent-free processes improve productivity.
What it demands
A structure that conducts as a dry powder, and the durability to withstand pressure.
Higher capacity to support on-device AI features.
What it demands
A flexible scaffold that absorbs expansion without breaking.
What is needed is a carbon material whose structure can be designed.
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Addressable market
Changing the scale at which structure is controlled opens up domains with different unit prices and different market sizes.
Price (JPY/kg)
High
Middle
Low
Semiconductors
TAM ~100T JPY
LiB, premium
TAM ~5T JPY
LiB, commodity
TAM ~15T JPY
Aerospace structures
TAM ~2T JPY
Fillers
TAM ~1T JPY
nm
μm
10-100μm
mm
Scale of structural control
※ TAM figures indicate relative scale rather than exact values, based on the market size of the target industry in each domain. 3DC estimates.
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A carbon you can design
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The material
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Tunability
By selecting the template, we can tune particle size, surface area and structure to suit the purpose. The world’s first carbon material whose nanostructure can be controlled at industrial scale.
Primary particle size
5-120nm
Designable across a range of more than 20×
Specific surface area
500-2,000m2/g
Balances surface area and bulk density
Structure (oil absorption)
500-3,000ml/100g
Governs dispersibility and electrode density
One material — yet distinct grades, built around each customer’s battery design
Where existing carbon materials mean choosing from what exists, GMS can be designed to meet specific requirements.
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Case study
Electrolyte retention
The interconnected pores of GMS hold electrolyte and supply ions at high speed.
200C+
Performance demonstrated at rates above 200C
Intended applications: eVTOL, drones and backup power for data centers — applications that move large currents in and out over short periods
Mechanical flexibility
GMS acts as a buffer that absorbs the expansion of a silicon anode.
50%+
Gains demonstrated in systems containing over 50% silicon
Intended applications: AI-capable high-end smartphones and very long-range electric vehicles — applications demanding still higher capacity
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As early as 2014, the performance of GMS was already highly regarded, in industry as well as academia.
Even so, for eight years no company committed to the capital investment and process development, because the risk of scaling up was so large.
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The moat
Background
The world’s first,
made by us.
Concentrate resources on proving production, not on proving performance.
3DC was founded on that single bet.
Taking on the risk no one had taken for eight years since the invention.
That challenge is itself our barrier to entry.
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The moat - Manufacturing track record
100kg/yr
Current production scale
Running 24 hours a day since early 2026
120
Companies supplied with GMS
Battery and materials makers and research institutes, in Japan and abroad
15t/yr
Plant capacity (under construction)
Equivalent to 3GWh of batteries. Start-up planned for end of 2026
The GMS mass-production plant under construction (Gifu Plant)
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Materials, and the platform around them
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Our business
Materials
The first application is a conductive additive for lithium-ion batteries. Joint development with battery manufacturers has confirmed substantial performance gains.
Focus areas
Solutions
A platform combining a data foundation that embeds domain knowledge with AI features, turning know-how that tends to live in individuals into an asset of the organization.
Offerings
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Material business
Premium LiB
Design-in secured
High-end LiB
eVTOL, drones, DC
Commodity
Automotive, ESS
Semiconductors
Heat and RF absorption
Design-in secured in premium lithium-ion applications.
The premium segment is receptive to high-value component technologies, letting us establish GMS production technology and profitability at the same time.
Moving into high-end applications where rate and capacity translate directly into value.
The electrolyte retention and reversible elasticity proven in premium applications become the differentiator.
Expanding into commodity batteries for vehicles and energy storage.
The stage at which production scale supports full recovery of fixed costs — and we become a market leader in a still-growing market.
Applying the experience of delivering value through structural control to new growth markets such as semiconductors.
Entering larger, higher-value markets and growing the company further.
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Material business - Customers
Adoption is under review at leading manufacturers in Japan, Korea, China, Europe and North America.
Total
120
companies
Since the Gifu plant started up in February 2024
Applications
Customers
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Material business - Momentum
※ Absolute values on the vertical axis are withheld for business reasons. Bar heights show month-on-month relative comparison.
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Solution business - Problem
3DC addresses the four walls that stand in the way of digital transformation in R&D.
Nothing is recorded digitally
Documents, instrument logs and floor notes never end up in a form anyone can use later
In practice
Today’s task
> A long-term single source of truth
Data never joins up
Records are fragmented across files, samples and departments; tracing one experiment means a long search
In practice
Convenient for me
> Usable by everyone
Know-how lives in people’s heads
Judgment and technique that never reach a written procedure leave with the person who held them
In practice
Ask that person
> Organize and document
The value never comes out
Tools get introduced, but few can use them, the answers are not trusted, and they are abandoned
In practice
Local optimum per person
> Organizational optimum
These four walls are ones 3DC itself ran into as a materials manufacturer, and defined for itself.
Being built by people who know the domain from the inside is itself the strength.
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Solution business - Product
An all-in-one AI platform built around how experiments actually run in battery and chemical development — from the bench through scale-up. Planned for launch in February 2027.
AI-Ready
data foundation
×
Experiment-first
AI agents
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Solution business - Why now
Software was built on the premise that people organize and analyze data. That premise is changing. Human value moves from speed of execution to how well you direct AI. Every employee becomes a manager of AI.
General reasoning — a general-purpose LLM — is replaceable. What differentiates is your own data and know-how. Trial, error and judgement are the most valuable information there is, and they are buried on the development floor.
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How we work
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Code of conduct
The four principles we keep to in order to realize our mission and vision.
01.
Our core competence lies in materials chemistry and electrode manufacturing. Building on that strength, it is essential to solve meaningful problems for the market and our customers. We read the problems of the market and our customers against our own strengths, and judge which questions 3DC should and should not take on.
02.
The energy transition and the battery industry are global issues and global industries. Benchmarking our speed and our organizational capability against the world’s leading companies, and thinking about where battery innovation can leave a mark beyond Japan and Asia, is essential to a real energy transition.
03.
Only 25 years remain until the 2050 net zero target. The pace of business and technology development in the Chinese and Korean battery industries is remarkable, and to compete with them we must grow at the fastest possible pace.
04.
Transforming the battery industry requires bringing together many kinds of knowledge and testing ideas and hypotheses from many angles. That is only possible if we debate internally without regard to rank.
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Workplace
Sendai, Miyagi
On the Tohoku University campus. The center of our foundational carbon-material R&D.
Toki, Gifu
Where the GMS production line runs — the heart of the business.
Kawasaki, Kanagawa
The base for management, sales and corporate functions.
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Organization
32 of our 45 people work in R&D and manufacturing. We are built to do what a materials manufacturer is supposed to do, and do it properly.
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Our edge
Most materials startups keep research in house and outsource manufacturing. Because 3DC owns its plant, results from the lab can move directly into production conditions for validation.
And a problem that appears in production goes straight back to research. The speed of that round trip is why a material that stood still for eight years reached mass production in four.
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Life at 3DC
From the east of Japan to the west, offsites and gatherings across our sites build relationships where people speak openly as equals, regardless of position or tenure.
Annual / rotating between sites
Once a year, members from every site gather at one location and discuss our mission, vision and code of conduct again, in our own words.
Bi-annual / Gifu
A twice-yearly competition for anyone who wants to join. Sales, manufacturing and corporate across generations — one of the most popular internal gatherings.
Occasional / Sendai and Gifu
Because each site does different work, we sometimes run hands-on sessions to help everyone understand what the others do.
Occasional / around Kanto
Through connections between startups, we take part in a futsal tournament, competing with companies from other industries.
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Open roles and process
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People
Eighty percent come from the chemical and manufacturing industries and from battery makers. The people building our operations know the work firsthand.
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Open roles
Selling to leading battery makers in China, Korea, Europe and the US. Customer samples are already in evaluation; your role is to secure design-in.
Markets: China, Korea, Europe, US
Lead capital and business alliances, reporting directly to the CEO. Design the shape of the business itself, not just sell the material.
Reporting line: directly to the CEO
Product development for battery materials and new applications — from template design to grade development, with GMS’s tunability as your instrument.
Location: Sendai / Gifu
A core member building the AI platform for battery and materials R&D, leading the creation of a new product from the front.
Location: Kawasaki
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Open roles
There are no take-home assignments or tests. The final interview is always with the CEO in person.
Apply
Informal chat is fine
Interviews (1–2)
Team and hiring lead
Final interview
Directly with the CEO
Offer
Aligning on terms
Before skills:
how strongly you align with our
mission, vision and principles.
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Why join
Most materials startups stop once performance is proven. 3DC already has a plant, runs it continuously, and delivers to leading manufacturers worldwide. Starting from “it is being done” rather than “it should be possible” is rare in this field.
Our customers are the leading battery makers of Japan, Korea, China, Europe and North America. This is work that takes a material born in Japan and competes with the world directly. In a company of 45, the distance between an idea and a decision is almost zero.
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Get in touch
Careers
Hiring mainly for international sales, business development and product development. Come and talk to us first.
Samples & joint development
Tell us about your application and performance requirements, and we will propose a suitable grade.
Contact
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Reference
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Glossary
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Creating a better world through
the synergy of chemistry and physics
© 2026 3DC Inc. All Rights Reserved.
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