Unprecedented Biodegradable Cellulose-Derived Polyesters with Pendant Citronellol Moieties: From Monomer Synthesis to Enzymatic Degradation

被引:9
|
作者
Kayishaer, Aihemaiti [1 ]
Fadlallah, Sami [1 ]
Mouterde, Louis M. M. [1 ]
Peru, Aurelien A. M. [1 ]
Werghi, Yasmine [1 ]
Brunois, Fanny [1 ]
Carboue, Quentin [1 ]
Lopez, Michel [1 ]
Allais, Florent [1 ]
机构
[1] AgroParisTech, CEBB, URD Agrobiotechnol Ind ABI, F-51110 Pomacle, France
来源
MOLECULES | 2021年 / 26卷 / 24期
关键词
Levoglucosenone; oxa-Michael addition; Baeyer-Villiger oxidation; branched polymers; renewable polyesters; sustainability; biodegradation; OPENING METATHESIS POLYMERIZATION; HYDROLYTIC DEGRADATION; LEVOGLUCOSENONE; POLYMERS; POLYPHOSPHAZENES; SOLVENT;
D O I
10.3390/molecules26247672
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Levoglucosenone (LGO) is a cellulose-derived molecule that is present commercially on a multi-ton/year scale. Taking advantage of the alpha,beta-conjugated ketone of LGO, a new citronellol-containing 5-membered lactone (HBO-citro) was synthesized through a one-pot two-step pathway involving oxa-Michael addition and Baeyer-Villiger oxidation. The solvent-free treatment of HBO-citro with NaBH4 at room temperature led to the full reduction of the lactone moiety which gave a novel fully renewable triol monomer having a citronellol side chain (Triol-citro). Noticeably, by simply changing the reducing agent, temperature and reaction duration, the partial reduction of HBO-citro can be achieved to yield a mixture of 5- and 6-membered Lactol-citro molecules. Triol-citro was chosen to prepare functional renewable polyesters having citronellol pendant chains via polycondensation reactions with diacyl chlorides having different chain lengths. Good thermal stability (T-d5% up to 170 degrees C) and low glass transition temperatures (as low as -42 degrees C) were registered for the polyesters obtained. The polymers were then hydrolyzed using a commercial lipase from Thermomyces lanuginosus (Lipopan(R) 50 BG) to assess their biodegradability. A higher degradation profile was found for the polyesters prepared using co-monomers (acyl chlorides) having longer chain lengths. This is likely due to the decreased steric hindrance around the ester bonds which allowed enhanced accessibility of the enzyme.
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页数:14
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