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形狀
suspension
成份
Propylene glycol monomethyl ether - diethylene glycol monomethyl ether solvents (PM-DGME) (solvent)
Silver content, 60 wt. %
粒度分佈
100 nm (D90 by Lumisizer™)
75 nm (D50)
表面張力
, 23dyn/cm (Pendant Drop)
黏度
26 cP (Brookfield, Cone Spindle 40, 25 °CBrookfield, Cone Spindle 40, 25 °C)
密度
2.14 g/mL
儲存溫度
15-25°C
相关类别
應用
This product is a conductive ink based on single-crystal silver nanoparticles in a mixture of propylene glycol monomethyl ether - diethylene glycol monomethyl ether solvents (PM-DGME), has been designed for Aerosol digital printing systems and low temperature sintering applications. The ink offers a unique combination of properties, including high silver loading, low viscosity, storage at ambient conditions, long shelf life, reliable jetting and good printability. Printed patterns, sinterable at low temperatures, provide low electrical resistivity, good adhesion to a wide range of substrates and durability to humid and aqueous environments.
This product can be stored at room temperature.
Printed Electronics: FPD, RFID, PCB
Aerosol Jet can print conformal interconnects on 3D surfaces eliminating the need for wire bonding - for example printing electrical connections on 3D stacked die or for LED chip fabrication. Components can also be printed onto 3 dimensional surfaces eliminating the need for a separate substrate thereby reducing the size, thickness and weight of the end product. For example, Aerosol Jet is used to print antennas and sensors that conform to the shape of the underlying substrate such as a cell phone case. The Aerosol Jet process also supports printing on a wide variety of substrates including plastics, ceramics and metallic structures.
This product can be stored at room temperature.
- Compatible printheads
- Product fit for:
Printed Electronics: FPD, RFID, PCB
Aerosol Jet can print conformal interconnects on 3D surfaces eliminating the need for wire bonding - for example printing electrical connections on 3D stacked die or for LED chip fabrication. Components can also be printed onto 3 dimensional surfaces eliminating the need for a separate substrate thereby reducing the size, thickness and weight of the end product. For example, Aerosol Jet is used to print antennas and sensors that conform to the shape of the underlying substrate such as a cell phone case. The Aerosol Jet process also supports printing on a wide variety of substrates including plastics, ceramics and metallic structures.
準備報告
Mix well before use.
Electrical Properties
Sintering conditions (on glass) :
UV followed by thermal (UV 9 W/cm2, 2 min (+), Thermal: 130°C/60 min)
Resistivity after sintering conditions mentioned above : ≤10 μΩ·cm (≤6 bulk)
Adhesion to (tested) :
Kapton, PC, PC/ABS, PA, glass
Reliability :
Adhesion survived below testing conditions (on glass):
soaking in NaCl 1M for 2 h
soaking in NaCl 1M for 2 h and in DI water for 20 h
Electrical Properties
Sintering conditions (on glass) :
UV followed by thermal (UV 9 W/cm2, 2 min (+), Thermal: 130°C/60 min)
Resistivity after sintering conditions mentioned above : ≤10 μΩ·cm (≤6 bulk)
Adhesion to (tested) :
Kapton, PC, PC/ABS, PA, glass
Reliability :
Adhesion survived below testing conditions (on glass):
soaking in NaCl 1M for 2 h
soaking in NaCl 1M for 2 h and in DI water for 20 h
法律資訊
Lumisizer is a trademark of LUM GmbH
訊號詞
Danger
危險分類
Aquatic Acute 1 - Aquatic Chronic 1 - Carc. 2 - Eye Irrit. 2 - Flam. Liq. 3 - Met. Corr. 1 - Repr. 1B - Skin Irrit. 2
儲存類別代碼
3 - Flammable liquids
水污染物質分類(WGK)
WGK 3
閃點(°F)
85.1 °F
閃點(°C)
29.5 °C
Electrical characterization of Aerosol Jet Printing (AJP) deposited conductive silver tracks on organic materials.
Microelectronic Engineering, 67-75 (2018)
ACS sensors, 4(1), 218-226 (2018-12-19)
Flexible and stretchable strain sensors are in great demand for many applications like wearables and home health. This work reports a strain sensor fabricated using aerosol jet printing technology on a commercially available bandage to be used as a low-cost
Aerosol jet printed silver nanowire transparent electrode for flexible electronic application.
Journal of Applied Physics, 123(17), 174905/1-174905/7 (2018)
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