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posted by martyb on Thursday May 28 2015, @06:02PM   Printer-friendly
from the biodegradable-chips-give-new-meaning-to-"computer-virus" dept.

Technicians from the University of Wisconsin-Madison, in collaboration with the Department of Agriculture Forest Products Laboratory (FPL), have demonstrated the feasibility of replacing the substrate of a computer chip with cellulose nanofibril (CNF), a flexible, biodegradable material made from wood.

The full paper is available. From the abstract:

Today's consumer electronics, such as cell phones, tablets and other portable electronic devices, are typically made of non-renewable, non-biodegradable, and sometimes potentially toxic (for example, gallium arsenide) materials. These consumer electronics are frequently upgraded or discarded, leading to serious environmental contamination. Thus, electronic systems consisting of renewable and biodegradable materials and minimal amount of potentially toxic materials are desirable. Here we report high-performance flexible microwave and digital electronics that consume the smallest amount of potentially toxic materials on biobased, biodegradable and flexible cellulose nanofibril papers. Furthermore, we demonstrate gallium arsenide microwave devices, the consumer wireless workhorse, in a transferrable[sic] thin-film form. Successful fabrication of key electrical components on the flexible cellulose nanofibril paper with comparable performance to their rigid counterparts and clear demonstration of fungal biodegradation of the cellulose-nanofibril-based electronics suggest that it is feasible to fabricate high-performance flexible electronics using ecofriendly materials.


[Editor's Comment: Original Submission]

 
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  • (Score: 3, Informative) by sudo rm -rf on Friday May 29 2015, @11:52AM

    by sudo rm -rf (2357) on Friday May 29 2015, @11:52AM (#189621) Journal

    ...break down over time, or the first time they get wet

    They seem to have considered at least the moisture problem:
    TFA:
    "Wood is naturally a hygroscopic material and could attract moisture from the air and expand. However, researchers manufactured a special epoxy coating on the surface of the CNF which dealt with concerns about both surface smoothness and moisture."

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