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Oleophobic interaction mediated slippery organogels with ameliorated mechanical performance and satisfactory fouling-resistance
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作者 Liangpeng Zeng Hongyuan Cui +6 位作者 Huilan Peng Xiaohang Sun Yi Liu Jingliang Huang xinxing lin Hui Guo Wei-Hua Li 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第26期227-235,共9页
Owing to their inherent semi-solid property and lubricant ability,organogels manifest various unique characteristics and serve as promising candidates for antifouling.However,the poor mechanical properties of organoge... Owing to their inherent semi-solid property and lubricant ability,organogels manifest various unique characteristics and serve as promising candidates for antifouling.However,the poor mechanical properties of organogels often limit their practical applications.Herein,we report a simple and effective method to prepare organogels with reinforced mechanical performance and surface lubricant ability with the synergistic roles played by oleophobic and oleophilic chains.The rigid oleophobic chains have a poor affinity to lubricating solvent,which gives rise to high oleophobic interactions between polymer networks;the soft oleophilic chains possess a high affinity to the low surface energy solvent,which lead to high solvent content to maintain the satisfactory lubricant capacity.The organogel of oleophobic methyl methacrylate(MMA)and oleophilic lauryl methacrylate(LMA)is chosen as a representative example to illustrate this concept.With the optimal composition,the as-prepared organogels offer satisfactory tensile fracture stress,fracture strain,Young’s modulus,toughness,and tearing fracture energy of 480 k Pa,550%,202 k Pa,1.14 MJ m,and 5.14 k J m,respectively,which are far beyond the classical PLMA organogels.Furthermore,the biofouling resistance tests demonstrate 4 to 9-fold reduction of protein and bacteria adhesion on the reinforced organogels surface in comparison to the glass substrate and solvent-free dry organogels.This simple and effective approach to toughen organogels,we hope,can be applied in various fields with different practical functional requirements in the future. 展开更多
关键词 ORGANOGELS Mechanical reinforcement Fouling-resistance Slippery surface
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受肌肉启发的离子响应韧性可调型水凝胶的开发与应用 被引量:1
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作者 李平 王子昂 +2 位作者 林新星 王晓琳 郭辉 《Science China Materials》 SCIE EI CAS CSCD 2022年第1期229-236,共8页
肌肉组织可因特定离子的刺激而发生显著机械性能的变化.受此现象启发,本文通过一种简单高效的策略,赋予结晶型聚乙烯醇水凝胶显著的盐响应性特征.与肌肉组织类似,这类水凝胶的机械性能展现出强烈的离子种类及浓度的依赖关系.经过相关浓... 肌肉组织可因特定离子的刺激而发生显著机械性能的变化.受此现象启发,本文通过一种简单高效的策略,赋予结晶型聚乙烯醇水凝胶显著的盐响应性特征.与肌肉组织类似,这类水凝胶的机械性能展现出强烈的离子种类及浓度的依赖关系.经过相关浓度盐溶液处理后,该水凝胶在硬度(杨氏模量~0.16-9.6 MPa)、延展性(伸长率~100%-570%)和韧性(断裂功~0.82-35 MJm^(-3))方面表现出大范围的可调控性.其机械性能的变化很好地遵循了霍夫迈斯特序列,即强盐析性质的离子(kosmotropes)在水凝胶增韧中彰明较著.同时,该水凝胶的机械性能与盐溶液浓度表现出显著的正相关性.实验证明,离子可显著影响非晶区的高分子水化程度和结晶区的聚合物结晶度,进而协同调控水凝胶的机械性能.得益于此,这类水凝胶在韧性可调工程软材料、防冰涂料和柔性电子设备等领域展现出良好的应用前景. 展开更多
关键词 水化程度 结晶型 聚乙烯醇水凝胶 聚合物结晶 柔性电子 协同调控 非晶区 结晶区
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Preparation of guanidine-modified starch for antimicrobial paper
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作者 Kai Liu xinxing lin +1 位作者 Lihui Chen Liulian Huang 《Journal of Bioresources and Bioproducts》 EI 2016年第1期3-6,共4页
Normal paper does not have antimicrobial properties.To impart antimicrobial properties to paper for medical applications,a guanidine-modified starch was prepared via two reaction steps using guanidine hydrochloride(GH... Normal paper does not have antimicrobial properties.To impart antimicrobial properties to paper for medical applications,a guanidine-modified starch was prepared via two reaction steps using guanidine hydrochloride(GH)as a modifier,and added to the paper coating formula.FT-IR demonstrated that the GH was successfully grafted onto the starch via the Schiff base reaction.After coating with the modified starch,the antimicrobial performance of the paper against E.coli and S.aureus was evaluated by the disc diffusion method.The results indicated that the paper treated with the guanidine-modified starch exhibited excellent antimicrobial properties against the E.coli and S.aureus.In addition,the dry and wet strength indexes of the coated paper increased by 25%and 100%,respectively,as compared to the control paper. 展开更多
关键词 STARCH Guanidine hydrochloride Medical paper Antimicrobial activity Tensile strength
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Fabrication of cellulose based superhydrophobic microspheres for the production of magnetically actuatable smart liquid marbles
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作者 xinxing lin Wei Ma +3 位作者 Hui Wu Liulian Huang Lihui Chen Atsushi Takahara 《Journal of Bioresources and Bioproducts》 EI 2017年第3期110-115,共6页
Cellulose microspheres were fabricated on the basis of sol-gel transition using NaOH/urea/H_(2)O as the solvent system.These microspheres had an average diameter of about 30μm.Upon modification with Fe_(3)O_(4) and p... Cellulose microspheres were fabricated on the basis of sol-gel transition using NaOH/urea/H_(2)O as the solvent system.These microspheres had an average diameter of about 30μm.Upon modification with Fe_(3)O_(4) and poly(DOPAm-co-PFOEA),superhydrophobic magnetic cellulose microspheres were generated,which were analyzed by FTIR,TG,XRD,XPS and water contact angle tests.Magnetic cellulose microspheres contained approximately 15 wt%of Fe_(3)O_(4).Poly(DOPAm-co-PFOEA)/Fe_(3)O_(4)/cellulose microspheres and had a low surface energy and a high water-repellency.These superhydrophobic microspheres were also converted into liquid marbles via an easily scalable process. 展开更多
关键词 Superhydrophobic microspheres Magnetically actuatable Smart liquid marble Cellulose microsphere
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