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Aerosol Jet Printing Technology
Ultrasonic Atomization Powder-Production Technology
Electronics Materials and Energy Storage MORE >JACS: Micrometer-Level Precision—Aerosol Jet Printing Enables Controlled Patterning and Compositing of COF Thin Films “Adv. Funct. Mater.”: MXene Microsupercapacitors Fabricated via Aerosol Jet Printing for Flexible, Washable Textile Energy Storage “Small”: MXene 3D-AJP—Realizing a Three-Dimensional, Oriented, Free-Form Network of Two-Dimensional MXene Nanosheets via Aerosol 3D PrintingSensor and Internet of Things Field MORE >Small Methods: High-Performance MXene Microsupercapacitor Fabrication Technology Based on Aerosol Jet Printing Small Methods: A Low Environmental Footprint, Non-Sensitive Disposable Humidity and Temperature Sensor Fabricated via Aerosol Jet Printing on Cellulose Substrates npj Advanced Manufacturing: Aerosol Jet Printing Empowers All-Bio-Based Humidity Sensors to Tackle the Challenge of Electronic Waste
Carbon Black Nanoparticle Ink JR-038
Product Introduction
Equipment Parameters
Specification: 50 mL
JR-038 is a high-conductivity carbon-black nanoparticle ink designed for printing on a wide range of porous and non-porous substrates, including Novele™, polycarbonate, PET, polyimide, metals, and glass. It delivers excellent fine-line printing, outstanding adhesion, and enhanced water resistance through the incorporation of fluorinated polymers, making it an ideal choice for plastic, glass, and metal substrates. The ink can be cured thermally or processed using PulseForge technology.
Parameters
| Description | Water-based carbon ink |
| Viscosity | 30-40cp |
| Curing temperature | 250°C |
| Resistivity | 0.8 (Ω-cm) |
| Average particle size | 120-150nm |
| Carbon content (solid content) | 5 wt% |
| Surface tension | 25-30dyne/cm |
| Nebulizer | Ultrasonic nebulizer |
| Base material | Plastic, glass, and metal |
Performance
Contains fluoropolymers
Excellent adhesion and good water resistance
Download Materials
Software size:
596.4KB
File type:
The SU-8 3005 series of photoresists are negative-tone resists formulated with cyclopentanone as the solvent. In ultra-thick-film coating processes, they deliver excellent pattern stability and high resolution. Moreover, their film-thickness range is broader than that of any other commercially available photoresist: a single spin-coating step can produce films ranging from 0.5 to 300 μm in thickness, and multiple spin-coatings can be performed as needed to achieve even thicker films.
PI-AJ is a sprayable aerosol-forming electronic dielectric ink based on a polyimide precursor, diluted with a solvent, and exhibiting excellent adhesion to glass and many other materials.
PH1000 is a water-based PEDOT/PSS dispersion, appearing as a blue liquid. It is a leading product in the field of conductive chemistry and finds applications in next-generation flexible displays, high-performance electrochemical capacitors, antistatic and conductive protective and shielding coatings, as well as OLEDs, OPVs, and printed electronics—just a few of its many potential uses. It can be applied via screen printing, inkjet printing, gravure printing, slot-die coating, spray coating, dip coating, and spin coating.
With the continuous advancement of neuroscience and bioelectronics, the development of high-performance, miniaturized, and personalized neural interfaces has become a major research focus. Traditional fabrication techniques, however, are limited in terms of high precision, complex structural design, and material diversity, underscoring the urgent need for more flexible, precise, and efficient micro- and nanofabrication methods. Aerosol jet printing (AJP), as an emerging micro- and nanofabrication technology, is leveraging its unique advantages to progressively drive innovation in neural prosthetic devices.
With the increasing convergence of life sciences and electrical engineering, bioelectronic technologies have gradually emerged as a key driver of innovation in medicine, research, and industry. In particular, in the fields of tissue engineering and organ-on-a-chip systems, the development of efficient, flexible, and customizable electrode interfaces has become one of the major research priorities.
In today’s era of rapid technological advancement, soft robotics is transitioning from the laboratory to real-world applications—ranging from minimally invasive surgical instruments in medicine and flexible actuation units for wearable devices to precise motion control in microrobots—all of which depend on breakthroughs in the core component: soft actuators. Traditional soft actuators either struggle to be manufactured at the microscale, lack design flexibility, or rely on wired power supplies that limit their mobility. A recent study published in Nano Letters, however, reports the development of an MXene–cellulose nanofiber (CNF) composite actuator fabricated via aerosol jet printing (AJP), which simultaneously addresses three major challenges—scalability, customizability, and multi-stimulus responsiveness—thereby paving the way for the next generation of soft robotics.
AJ Application Cases
AJ5X Five-Axis Equipment Prints the Earth on a Spherical Surface
Duke University Application Case
Beijing Yunshang Intelligent Manufacturing Technology Co., Ltd.
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Headquarters Address: Room 708, Building 2, HICOOL Industrial Park, Nanfaxin, Shunyi District, Beijing
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