Adisyn is an ASX-listed company focused on harnessing the unique properties of graphene to develop an advanced semiconductor.
Adisyn aims to develop its technology in partnership with some of the world’s largest semiconductor businesses and already possesses a strategic cooperation agreement with IMEC (the world’s leading semiconductor industry R&D hub).
Adisyn is harnessing atomic layers of graphene to deliver a process for graphene-based interconnects, capable of improved performance and lower power consumption – delivered in an even smaller chip.
Contact information for Adisyn
2‑3/4 McGrath Road
Henderson WA
Australia
Adisyn confirms graphene deposition across a full 200mm wafer, ~300x its previous coupon-scale result
Adisyn has independently confirmed it can deposit graphene across a full 200mm industrial wafer at low temperature, below 300°C - a scale-up from the 1cm by 1cm coupon the company had previously demonstrated.
The deposition was tested at 12 sampling locations across the wafer and worked at all of them, covering an area roughly 300 times larger than that earlier coupon-level result. The low-temperature deposition, below 300°C, is significant because most existing semiconductor fabrication processes cannot tolerate the higher temperatures that traditional graphene growth methods typically require.
Adisyn reports verified graphene deposition repeatability and a US patent allowance
Adisyn has released its quarterly activities report for the period ending 30 June 2026, in which the company details independent verification of the repeatability of its graphene deposition process, a US patent allowance covering its core graphene coating technology, and progress on its parallel radar-absorption program.

The quarter's central technical result of the quarter came in June, when Adisyn reported independent expert verification that its graphene deposition process is repeatable. Through subsidiary 2D Generation, the company demonstrated continuous graphene film formation on a copper substrate using an industrial Atomic Layer Deposition (ALD) system, with all process steps maintained below 300°C - well beneath the semiconductor industry's thermal ceiling of roughly 450°C.
Adisyn and Raval to develop graphene-enhanced stealth components for drones
Adisyn subsidiary 2D Radar Absorbers has signed a memorandum of understanding with Israeli industrial manufacturer Raval A.C.S. to develop stealth components for drones and UAVs using graphene-enhanced radar absorption technology. The agreement combines Adisyn’s radar signature reduction technology with Raval’s industrial-scale plastics manufacturing capabilities, with both companies aiming to develop production-ready drone and UAV components from the outset.
Under the MoU, Raval will handle plastic and molding development, sample part manufacturing, and mechanical property testing using its serial production machinery. 2D Radar will lead graphene and two-dimensional materials research and development, as well as radar absorption performance testing with Tel Aviv University.
Adisyn secures $10 million backing following recent graphene breakthroughs
Adisyn has reportedly secured firm commitments to raise AU$14 million (over US$10 million) through an institutional placement, backed by major investors following two key technology milestones in its graphene semiconductor and defense programs.

The raise was cornerstoned by one of Australia’s largest institutional investors, Regal Funds Management and Meitav, Israel’s largest investment house and led by Sandton Capital Advisory. Regal manages more than $20 billion, while Meitav manages about $190 billion in assets, with both investors bringing experience across technology and defense sectors.
Adisyn secures stealth drone technology license
Adisyn has announced that 2D Generation's subsidiary, 2D Radar Absorbers, has entered into a binding License and Research Agreement with Ramot, the technology transfer company of Tel Aviv University (“TAU”). The agreement grants Adisyn exclusive, worldwide rights to commercialize graphene-based radar signature reduction technology, marking a transition from research to a structured commercial development phase.
This agreement comes at a time of increasing global focus on radar signature management, driven by the rapid expansion of UAV deployment, Loitering Munitions, and the growing sophistication of detection systems across defence and aerospace sectors.
Adisyn reports advancement in low-temperature graphene production
Adisyn has reportedly taken a step toward solving one of the semiconductor industry’s most stubborn problems, advancing low-temperature graphene production.

Adisyn has deposited a continuous graphene layer across a 1cm by 1cm surface using an industrial Atomic Layer Deposition (ALD) system - at temperatures well below the semiconductor industry’s thermal ceiling of around 450°C. Advanced imaging and testing have confirmed that the graphene forms a continuous layer across the entire surface, a critical requirement for use in semiconductor chips.
Adisyn establishes new defense technology subsidiary focused on graphene radar absorbers
Adisyn has announced the establishment of a new defense technology subsidiary, 2D Radar Absorbers Ltd, following the successful demonstration of up
to 20dB radar signature reduction using graphene-enhanced composite materials. The testing was conducted in collaboration with Tel Aviv University.
The Company is now advancing a targeted development program aiming to optimize the materials to achieve approximately 30dB radar signature reduction A reduction of this magnitude represents a 1,000-fold decrease in radar return signal strength, meaning a drone that previously appeared as a large object on radar would appear closer to the size of a large insect. If achieved, such reductions may significantly reduce the radar detectability of drones and UAV platforms and have potential applications across defence, aerospace, and advanced materials sectors.
Adisyn reports graphene-based radar signature reduction for drones
Adisyn recently completed an initial proof-of-concept program demonstrating that graphene-enhanced composite materials can reduce radar reflection characteristics, with laboratory testing confirming up to 20dB reduction in radar reflection.
The program was conducted in collaboration with Ramot, the technology transfer company of Tel Aviv University. Composite samples were tested under controlled laboratory conditions and demonstrated up to 20dB reduction in radar reflection coefficient relative to baseline materials. The research team is now working on further optimization, targeting up to a 30dB reduction. According to Adisyn, a reduction of that magnitude would shrink the actual physical radar cross-section – the size of a target as detected by radar – by a factor of 1,000.
Adisyn’s 2D Generation reports progress in integrating graphene interconnects for computer chips
Adisyn has announced a significant advancement in its semiconductor research through its subsidiary, 2D Generation. The team has validated a critical early step in the process of integrating graphene interconnects into computer chips: preparing the silicon wafer surface to the exacting standards required for high-precision manufacturing.
Achieving a perfectly clean and smooth wafer surface is a foundational step - any imperfection at this stage can compromise the entire chip production process, leading to lower yields and higher costs. By demonstrating reliable execution at this level, 2D Generation has shown it can master the fundamentals necessary for scaling up semiconductor fabrication.
2D Generation completes ALD system installation in Israel
Adisyn’s subsidiary, 2D Generation, has finalized the installation, commissioning, and calibration of a Beneq TFS 200 atomic layer deposition (ALD) system at the Jan Koum Center for Nanoscience and Nanotechnology in Israel.
This project follows infrastructure upgrades at the center to support the precision demands of ALD-based research. Adisyn focuses on developing and commercializing innovative technology solutions. Its subsidiary, 2D Generation, is working to advance graphene applications in semiconductors.
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