Folding screen mobile phones are obsolete. The electronic chips implanted in the body can be non-toxic and harmlessly degraded. The electronic chips implanted in the body will automatically dissolve in the body ... Recently, the team of Professor Huang Xian of the School of Precision Instrument of Tianjin University successfully developed the "water-induced sintering" printing technology to achieve low energy consumption. 2. Low-cost production of bioabsorbable flexible electronic components. Related research results have recently been published in the international authoritative journal "Advanced Functional Materials".
Folding computers, folding mobile phones, and wearable digital products are on the rise. With the development of science and technology, flexible electronic devices are gaining more and more attention from the society. Such devices can still work under bending, folding, twisting, compressing or stretching conditions. , Medical, information and communication fields have a very broad space for development.
Flexible electronic printing is the key core of manufacturing flexible electronic equipment. Its principle is to use precision printing technology to make electronic devices or circuits, and replace the ink that expresses the color with the ink with electronic functions. The graphics printed on the flexible substrate have Electronic functions. The international mainstream processing methods for flexible electronic printed graphics include high-temperature heating, laser sintering, and optical pulse sintering. These printing methods are costly, easily cause circuit substrate damage, high energy consumption, and are not environmentally friendly.
The team of professor Huang Xian from the School of Precision Instrument of Tianjin University successfully developed the "water-induced sintering" flexible electronic printing method, using the characteristics of acid anhydride to produce weak acid in water. Intensity light pulses can use water vapor to manufacture flexible electronic circuits at room temperature, which is expected to be a breakthrough in the production of flexible electronic materials.
It is worth mentioning that the flexible electronic components produced by this "water-induced sintering" method can work stably under normal use conditions for a long time, can achieve non-toxic degradation under specific humidity, and has good bioabsorbability. The biomedical field has broad prospects.
Huang Xian introduced that using "water-induced sintering" printing technology and nano-conductive ink, users do not need to purchase and install expensive sintering equipment, mass production of flexible electronic components cost is expected to be reduced to 1% of the existing cost. "The processing and processing technology of new flexible electronic components has brought great convenience to the large-scale commercial production of bioabsorbable flexible electronic equipment."
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