Recent advances in urea-formaldehyde resins: converting crystalline thermosetting polymers back to amorphous ones

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초록

Since their first synthesis in 1884, thermosetting and amorphous urea-formaldehyde (UF) resins have mainly been used as wood adhesives yet are known to be responsible for the release of formaldehyde, which contaminates indoor air and causes sick building syndrome. An easy and efficient way of reducing formaldehyde emissions is to synthesize UF resins with a low formaldehyde-to-urea (F/U) molar ratio (similar to 1.0). However, low molar ratio UF resins become crystalline polymers, as they form hydrogen bonds between linear molecules in the cured state, which inhibits the formation of a proper cross-linked structure and results in poor adhesion strength. Herein, recent advances in converting crystalline UF resins back to amorphous polymers through the blocking of hydrogen bonds are described, which consequently increases their cohesion, leading to a simultaneous improvement in their adhesion properties and formaldehyde emissions.

키워드

UF resins; formaldehyde emissions; hydrogen bonds; crystalline; amorphous; CHEMICAL-SHIFT; SOLID-STATE; MOLE RATIO; MELAMINE-FORMALDEHYDE; NMR; EMISSION; ADHESIVES; C-13; MECHANISM; ACID
제목
Recent advances in urea-formaldehyde resins: converting crystalline thermosetting polymers back to amorphous ones
저자
Wibowo, Eko Setio; Park, Byung-Dae; Causin, Valerio
DOI
10.1080/15583724.2021.2014520
발행일
2022-10-02
유형
Review
저널명
Polymer Reviews
권
62
호
4
페이지
722 ~ 756