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This Government Contract opportunity from Department Of Energy was posted on April 27, 2026. The submission period has ended. Browse the details below for market research, or find similar active opportunities.

TECHNOLOGY/BUSINESS OPPORTUNITY Dual-Material for Two-photon Printing for High-resolution, Multi-material 3D Structure Manufacturing

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IL-13998Federal

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Lawrence Livermore National Laboratory, operated by LLNS under a U.S. Department of Energy contract, is seeking industry partners to collaborate on the commercialization of a novel dual-material two-photon polymerization technology for high-resolution, multi-material 3D printing. The invention enables the simultaneous use of two distinct polymer resins—epoxy and acrylic—in a single vat, each engineered to respond selectively to different laser wavelengths (700 nm and 1045 nm). This allows precise control over material properties during fabrication: the 700 nm beam triggers both resins to create solid walls, while the 1045 nm beam activates only the acrylic component, leaving the epoxy behind to be washed out and forming internal porous structures. The system unlocks unprecedented spatial tuning of optical, mechanical, and electrochemical traits such as refractive index, Young’s modulus, porosity, and wettability within a single printed object, all without changing resin formulations mid-process. The technology is at a mature development stage, with a proven prototype and issued or pending patent protection, making it suitable for transition from laboratory validation to commercial application. Potential uses span high-precision fields including inertial confinement fusion fuel capsule manufacturing, medical devices, and advanced optics, where complex, heterogeneous structures with controlled density and material gradients are required. LLNL is not soliciting procurement bids but seeks licensees with demonstrated capability to bring this innovation to market. Interested parties must submit a formal statement of interest including company details, a designated point of contact, and evidence of relevant technical expertise or manufacturing infrastructure by May 27, 2026. All commercial engagement adheres to strict confidentiality protocols, and inquiries must be directed to the designated Innovation and Partnerships Office contacts with the correct reference ID IL-13998.

General Info

LLNL seeks partners to commercialize novel dual-material two-photon polymerization 3D printing technology.

Agency

Department Of Energy → Llns – DOE ContractorView Agency

NAICS

325211 - Plastics Material and Resin ManufacturingView NAICS

Place of Performance

Livermore, CA, USA

Set-Aside

NONE

Documents

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Timeline

PhaseClosed
Posted

special-notice

Response Deadline

Deadline has passed

Submission Closed

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Organization & Contact Information

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AgencyDepartment Of Energy → Llns – DOE Contractor
Contacts2 people available
OfficeLivermore, CA, 94551, USA
Organization / Agency
Department Of Energy → Llns – DOE Contractor
View Agency Profile
Office AddressLivermore, CA, 94551, USA

Full Description

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Opportunity:


Lawrence Livermore National Laboratory (LLNL), operated by the Lawrence Livermore National Security (LLNS), LLC under contract no. DE-AC52-07NA27344 (Contract 44) with the U.S. Department of Energy (DOE), is offering the opportunity to enter into a collaboration to further develop and commercialize its Dual-Material for Two-photon Printing for High-resolution, Multi-material 3D Structure Manufacturing.



Background:


Commercial TPP systems generally utilize single femtosecond laser beams (typically 800 nm wavelength). The use of a single femtosecond laser at a fixed wavelength presents certain limitations in photochemistry for materials and resolution capabilities.  Introducing a dual-wavelength, two laser TPP system with tunable wavelengths and advanced beam shaping can significantly enhance the controllability and availability of different photo-chemistries for multi-material printing with higher resolution.  The challenge then is designing a single vat TPP printing formulation which takes advantage of the dual-wavelength, two laser TPP system.  Optimizing the chemistries to allow for two different polymer resin mixtures to be combined which interact independently of each other at each of the different wavelengths used is an especially challenging task.



Description:


LLNL researchers have developed a new two-photon polymerization multimaterial resin formulation consisting of two reactively distinct polymer systems.  The first system consists of a liquid, optically clear, epoxy resin which undergoes polymerization via type I photoacid generator (PAG) with a photo absorber at 700 nm while the second part is an acrylic system with a customized high cross-section photoinitiator with a high absorption at 700nm and 1045nm.  By combining both polymer resin formulations into a single vat and using a custom two laser, dual wavelength TPP printer system, LLNL researchers can print complex structures.  They are able to print structures where the walls of the structures are printed at 700 nm, yielding a fully solid structure by activating both acrylic and epoxide chemistry, while the internal octet structure is printed using 1045nm fixed beam, which only activates the acrylic—allowing the unreacted epoxy to be washed away in the post processing procedure leaving a more porous material.



Advantages/Benefits


  1. Ability to selectively trigger disparate photochemistry enabling heterogeneous materials in a 3D structure in high resolution.
  2. Ability to control and tune printed materials’ optical, mechanical, and electrochemical properties for various applications. For example, refractive index, Young’s modulus, porosity, density, wettability can be spatially tuned.
  3. The combination of structure and material control imparts unique functionality.
  4. The approach simplifies the manufacturing process by finishing the heterogeneous structure in a single vat process without changing the precursor resin.


Potential Applications


Inertial confinement fusion (ICF) printing of target fuel capsules, ability to print in a single vat resin system with density control, soft/hard material compositions, polymer/metal printing, precision medical.  In essence the ability to print and tune physical properties while maintaining the high resolution of TPP printers using a single multimaterial, multi component resin formulation.



Development Status: 


Current stage of technology development: TRL ☐ 0-2     ☒ 3-5     ☐ 5-9



LLNL has filed for patent protection on this invention.



LLNL is seeking industry partners with a demonstrated ability to bring such inventions to the market. Moving critical technology beyond the Laboratory to the commercial world helps our licensees gain a competitive edge in the marketplace. All licensing activities are conducted under policies relating to the strict nondisclosure of company proprietary information. 



Please visit the IPO website at https://ipo.llnl.gov/resources for more information on working with LLNL and the industrial partnering and technology transfer process.



Note:  THIS IS NOT A PROCUREMENT.  Companies interested in commercializing LLNL's Dual-Material for Two-photon Printing for High-resolution, Multi-material 3D Structure Manufacturing should provide an electronic OR written statement of interest, which includes the following:



  1. Company Name and address.
  2. The name, address, and telephone number of a point of contact.
  3. A description of corporate expertise and/or facilities relevant to commercializing this technology.


Please provide a complete electronic OR written statement to ensure consideration of your interest in LLNL's Dual-Material for Two-photon Printing for High-resolution, Multi-material 3D Structure Manufacturing.



The subject heading in an email response should include the Notice ID and/or the title of LLNL’s Technology/Business Opportunity and directed to the Primary and Secondary Point of Contacts listed below.



Written responses should be directed to:


Lawrence Livermore National Laboratory


Innovation and Partnerships Office


P.O. Box 808, L-779


Livermore, CA  94551-0808


Attention: IL-13998

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