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Bioresorbable materials and their application in electronics /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Bioresorbable materials and their application in electronics // Xian Huang, Tianjin University.
Author:
Huang, Xian,
Description:
1 online resource (77 pages) :digital, PDF file(s). :
Notes:
Title from publisher's bibliographic system (viewed on 29 May 2018).
Subject:
Biomedical engineering. -
Online resource:
https://doi.org/10.1017/9781108290685
ISBN:
9781108290685 (ebook)
Bioresorbable materials and their application in electronics /
Huang, Xian,
Bioresorbable materials and their application in electronics /
Xian Huang, Tianjin University. - 1 online resource (77 pages) :digital, PDF file(s). - Elements of flexible and large-area electronics2398-4015. - Cambridge elements..
Title from publisher's bibliographic system (viewed on 29 May 2018).
Bioresorbable electronics that can dissolve away in aqueous environments and generate biologically safe products offer a revolutionary solution to replace the built-to-last electronics predominantly used in implanted devices and electronic gadgets. Their use can reduce the risk of surgical complications by minimizing the number of necessary surgeries, and prevent production of electronic waste by allowing rapid device recycling. This Element presents bioresorbable materials such as metals, polymers, inorganic compounds, and semiconductors that have been used to construct electronic devices, and analyzes their unique dissolution behaviors and biological effects. These materials are combined to yield representative devices including passive and active components and functional systems.
ISBN: 9781108290685 (ebook)Subjects--Topical Terms:
588770
Biomedical engineering.
LC Class. No.: R857.M3 / H93 2018
Dewey Class. No.: 681.761
Bioresorbable materials and their application in electronics /
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Bioresorbable electronics that can dissolve away in aqueous environments and generate biologically safe products offer a revolutionary solution to replace the built-to-last electronics predominantly used in implanted devices and electronic gadgets. Their use can reduce the risk of surgical complications by minimizing the number of necessary surgeries, and prevent production of electronic waste by allowing rapid device recycling. This Element presents bioresorbable materials such as metals, polymers, inorganic compounds, and semiconductors that have been used to construct electronic devices, and analyzes their unique dissolution behaviors and biological effects. These materials are combined to yield representative devices including passive and active components and functional systems.
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https://doi.org/10.1017/9781108290685
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