HomeManufacturing3D PrintingOrganic Electronics For 3D Printing

    Organic Electronics For 3D Printing

    When looking at the future of production of micro-scale organic electronics, Mohammad Reza Abidian—associate professor of Biomedical Engineering at the University of Houston Cullen College of Engineering—sees their potential for use in flexible electronics and bioelectronics, via multiphoton 3D printers.

    The newest paper from his research group examines the possibility of that technology. “Multiphoton Lithography of Organic Semiconductor Devices for 3D Printing of Flexible Electronic Circuits, Biosensors, and Bioelectronics”

    Over the past few years, 3D printing of electronics has become a promising technology due to its potential applications in emerging fields such as nanoelectronics and nanophotonics. Among 3D microfabrication technologies, multiphoton lithography (MPL) is considered the state-of-the-art amongst the microfabrication method with true 3D fabrication capability, excellent level of spatial and temporal control, and the versatility of photosensitive materials mostly composed of acrylate-based polymers/monomers or epoxy-based photoresists.

    A new photosensitive resin doped with an organic semiconductor material (OS) to fabricate highly conductive 3D microstructures with high-quality structural features via MPL process,” Abidian said.

    They showed that the fabrication process could be performed on glass and flexible substrate poly(dimethylsilosane). They demonstrated that loading as low as 0.5 wt% OS into the resin remarkably increased the electrical conductivity of printed organic semiconductor composite polymer over 10 orders of magnitude.

    “The excellent electrical conductivity can be attributed to the presence of OS in the cross-linked polymer chains, providing both ionic and electronic conduction pathways along the polymer chains,” Abidian said.

    To demonstrate the potential electronic applications based on the OS composite resin, his team fabricated various microelectronic devices, including the micro-printed circuit board, which comprises various electrical elements, and an array of microcapacitors.

    Three dimensional bioprinting of organic semiconductor microdevices based on MPL has potential in biomedical applications including tissue engineering, bioelectronics, and biosensors. Abidian’s team successfully incorporated bioactive molecules such as laminin and glucose oxidase into the OS composite microstructures (OSCMs). To confirm that the bioactivity of laminin was retained throughout the entire MPL process, primary mouse endothelial cells were cultured on OS composite microstructures. Cells seeded on laminin incorporated OSCMs displayed evidence of adherence to substrate, proliferation, and enhanced survival.

    “We also assessed the biocompatibility of the OS composite structures by culturing lymphocytes, namely splenic T-cells and B-cells, on the fabricated surfaces and compared them with control surfaces. After seven days of culture, OS composite polymers did not induce cell mortality with approximately 94 percent cell viability compared to the control surfaces,” Abidian said. “In addition, the potential effect of OS composite polymers on cell activation was also studied. After seven days of culture, there was no significant difference in the expression of activation markers on the lymphocytes between OS composite structures and control surfaces.”

    Finally, Abidian proposed a maskless method based on MPL for the fabrication of bioelectronics and biosensors. They fabricated a glucose biosensor similar to Michigan style neural electrodes. Glucose oxidase, an enzyme for the specific recognition of glucose, was encapsulated within the solidified OS composite microelectrodes via the MPL process. The biosensor offered a highly sensitive glucose sensing platform with nearly 10-fold higher sensitivity compared to previous glucose biosensors. In addition, this biosensor exhibited excellent specificity and high reproducibility.

    “We anticipate that the presented MPL-compatible OS composite resins will pave the path towards the production of soft, bioactive, and conductive microstructures for various applications in the emerging fields of flexible bioelectronics, biosensors, nanoelectronics, organ-on-chips, and immune cell therapies,” Abidian said.

    ELE Times Research Desk
    ELE Times Research Deskhttps://www.eletimes.ai
    ELE Times provides extensive global coverage of Electronics, Technology and the Market. In addition to providing in-depth articles, ELE Times attracts the industry’s largest, qualified and highly engaged audiences, who appreciate our timely, relevant content and popular formats. ELE Times helps you build experience, drive traffic, communicate your contributions to the right audience, generate leads and market your products favourably.

    Related News

    Must Read

    Microchip Introduces 600V Gate Driver Family for High-Voltage Power Management Applications

    To meet the demanding needs of high-voltage power management...

    From Power Grids to EV Motors: Industry Flags Key Budget 2026 Priorities for India’s Next Growth Phase

    As India approaches Union Budget 2026–27, multiple industrial sectors—from...

    India’s Next Big Concern in the AI Era: Cybersecurity for Budget 2026

    Artificial Intelligence (AI), like any other technology, comes with...

    Anritsu Unveils Visionary 6G Solutions at MWC 2026

    ANRITSU CORPORATION showcases next-generation wireless solutions at MWC 2026...

    CEA-Leti Advances Silicon-Integrated Quantum Cascade Lasers for Mid-Infrared Photonics

    CEA-Leti presented new research at SPIE Photonics West highlighting major...

    How A Real-World Problem Turned Into Research Impact at IIIT-H

    The idea for a low-cost UPS monitoring system at...

    Microchip Expands PolarFire FPGA Smart Embedded Video Ecosystem providing enhanced video connectivity

    Microchip Technology has expanded its PolarFire FPGA smart embedded video ecosystem...

    element14 and Fulham announce global distribution partnership

    element14 has formed a new global distribution partnership with...