利用資源豐富的木質(zhì)素制備生物可降解材料或從木質(zhì)素中獲取高價值芳香類化合物,是高效制備生物基材料和非石油路線煉制關(guān)鍵平臺化合物的重要途徑。然而,木質(zhì)素在材料領(lǐng)域應(yīng)用還存在比較顯著的界面相容性問題,在煉制平臺化合物方面存在轉(zhuǎn)化率和產(chǎn)物選擇性較低的問題,從而制約了木質(zhì)素的快速應(yīng)用。針對以上問題,我校輕工科學(xué)與工程學(xué)院(柔性電子學(xué)院)李新平教授團(tuán)隊在木質(zhì)素化學(xué)與材料方面開展了系列研究。
游翔宇副教授等利用溶劑交換法開發(fā)了一種木質(zhì)素/聚(N,N-二甲基丙烯酰胺)和海藻酸鈉/Ca2+的雙交聯(lián)網(wǎng)絡(luò)木質(zhì)素基水凝膠。得益于多層次的剛性網(wǎng)絡(luò)和能量耗散結(jié)構(gòu),這種兼具高模量、超韌性和優(yōu)異傳感能力的木質(zhì)素基水凝膠,在極限運(yùn)動保護(hù)和可穿戴傳感器中顯示出應(yīng)用潛力。該研究發(fā)表于國際頂級期刊Advanced Functional Materials。
王文亮副教授等提出了一種微波響應(yīng)型催化劑,并成功用于克量級木質(zhì)素解聚蒸氣的微波輔助催化重整,為從資源豐富的木質(zhì)素中規(guī)?;@取關(guān)鍵的酚類和芳香烴類平臺化合物提供了行之有效的途徑。該研究發(fā)表于國際頂級期刊Applied Catalysis B: Environmental和Chemical Engineering Journal。
薛白亮教授等利用五/六元環(huán)碳酸酯反應(yīng)特點(diǎn),提出了具有動態(tài)交聯(lián)結(jié)構(gòu)的新型木質(zhì)素基非異氰酸酯聚氨酯合成路線?;谛切湍举|(zhì)素接枝共聚物的可控合成,利用核-核副反應(yīng)與動態(tài)化學(xué)策略,構(gòu)建了木質(zhì)素基動態(tài)雙網(wǎng)絡(luò)結(jié)構(gòu),探究了其在膠黏劑和可降解塑料等領(lǐng)域的應(yīng)用。該研究發(fā)表于Polymer Chemistry等國際期刊。
附:作者代表性文章 (陜西科技大學(xué)第一單位)
[1] Xinhong Li, Xiangyu You*, Xuelian Wang, Jia Kang, Huijie Zhang*. Advanced lignin-based hydrogels with superior stiffness, toughness, and sensing capabilities. Advanced Functional Materials, 2024. DOI: 10.1002/adfm.202415744.
[2] Yishuai Fu, Wenliang Wang*, Hui Miao, Yangyi Cui, Yutong Chen, Ziwei Wang, Guowei Xiao, Bailiang Xue*, Weikun Jiang*. Exploration of microwave absorptivity and catalysis of CMF@Co-MoS2 for microwave-initiated depolymerization of lignin. Chemical Engineering Journal, 2024, 501: 157591-157601. DOI: 10.1016/j.cej.2024.157591.
[3] Wenliang Wang*, Jiale Huang, Yishui Fu, Weikun Jiang*, Yutong Chen, Yujun Ma, Sizhe Han. A 3D porous Fe-MoS2/CMF catalyst for high-efficient catalytic reforming of lignin vapor by microwave irradiation. Applied Catalysis B: Environmental, 2023. DOI: 10.1016/j.apcatb.2023.122787.
[4] 付祎帥, 王文亮*, 苗暉, 陳育彤, 崔洋怡, 王紫薇, 潘佳文, 肖國偉. 微波響應(yīng)型CMF@CoS2/MoS2催化劑的制備及其用于木質(zhì)素蒸氣的催化重整. 化學(xué)學(xué)報(ACTA CHIMICA SINICA), 2024, 82 (6): 596-603. DOI: 10.6023/A24030079.
[5] Dou Li, Bailiang Xue*, Qinyu Zhao, Wenliang Wang, Xinping Li, Jialong Wen, Zhiwen Wang, Wei Zhao*. Green synthesis of lignin-based non-isocyanate polyurethanes as reusable, self-healable and removable adhesives. European Polymer Journal, 2024, 221, 113553.
[6] Quan Yan, Bailiang Xue*, Tonghe Zhang, Wenliang Wang, Xinping Li, Xiaojun Shen, Lulu Ning, Xianzhi Meng, Wei Zhao. One-pot strategy to access dynamic dual network from lignin-initiated star polymers by side reaction and transesterification. Polymer Chemistry, 2024, 15, 3052-3062.
[7] Tonghe Zhang, Bailiang Xue*, Quan Yan, Yue Yuan, Jiaojun Tan, Ying Guan, Jialong Wen, Xinping Li, Wei Zhao*. New kinds of lignin/non-isocyanate polyurethane hybrid polymers: Facile synthesis, smart properties and adhesive applications. Industrial Crops & Products, 2023, 199, 116706.
(核稿:劉國棟 編輯:趙誠)