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Segmented Polyhydroxyurethane as Nov...
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Beniah, Goliath.
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Segmented Polyhydroxyurethane as Novel Non-Isocyanate Polyurethane Functional Materials.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Segmented Polyhydroxyurethane as Novel Non-Isocyanate Polyurethane Functional Materials./
作者:
Beniah, Goliath.
出版者:
Ann Arbor : ProQuest Dissertations & Theses, : 2017,
面頁冊數:
322 p.
附註:
Source: Dissertation Abstracts International, Volume: 78-08(E), Section: B.
Contained By:
Dissertation Abstracts International78-08B(E).
標題:
Chemical engineering. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=10259094
ISBN:
9781369679472
Segmented Polyhydroxyurethane as Novel Non-Isocyanate Polyurethane Functional Materials.
Beniah, Goliath.
Segmented Polyhydroxyurethane as Novel Non-Isocyanate Polyurethane Functional Materials.
- Ann Arbor : ProQuest Dissertations & Theses, 2017 - 322 p.
Source: Dissertation Abstracts International, Volume: 78-08(E), Section: B.
Thesis (Ph.D.)--Northwestern University, 2017.
Polyurethane (PU) is an important commodity polymer with a broad range of applications. Increasing regulations on isocyanates have prompted investigations into alternative routes to PU. Cyclic carbonate aminolysis leading to polyhydroxyurethane (PHU) is a promising alternative. This dissertation describes the first fundamental investigation of the synthesis and properties of segmented, nanophase-separated PHUs as thermoplastic elastomer. The hydroxyl groups and soft-segment choice are critical to the development of nanophase separation and elastomeric properties. (Abstract shortened by ProQuest.).
ISBN: 9781369679472Subjects--Topical Terms:
560457
Chemical engineering.
Segmented Polyhydroxyurethane as Novel Non-Isocyanate Polyurethane Functional Materials.
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Polyurethane (PU) is an important commodity polymer with a broad range of applications. Increasing regulations on isocyanates have prompted investigations into alternative routes to PU. Cyclic carbonate aminolysis leading to polyhydroxyurethane (PHU) is a promising alternative. This dissertation describes the first fundamental investigation of the synthesis and properties of segmented, nanophase-separated PHUs as thermoplastic elastomer. The hydroxyl groups and soft-segment choice are critical to the development of nanophase separation and elastomeric properties. (Abstract shortened by ProQuest.).
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