This paper describes a triple-transforming gel system (gel-sol-gel') for the first time, which is a thermo-responsive and multi- component organogel prepared by β-cyclodextrin (β-CD), diphenylamine (DPA) and ...This paper describes a triple-transforming gel system (gel-sol-gel') for the first time, which is a thermo-responsive and multi- component organogel prepared by β-cyclodextrin (β-CD), diphenylamine (DPA) and lithium chloride (LiCl) in N,N-dimethyla- cetamide (DMAC) in a suitable proportion based on the supramolecular interactions. In the triple-transfomaing gel system, a gel (gel A) could be formed by β-CD, DPA and LiCl in DMAC at room temperature based on stirring, then the gel could transform into a clear solution based on heating, and then the other gel (gel B) can be formed at a relatively high temperature (Tget, the gelation temperature by heating). The two gel states in the triple-transforming gel system have different microstructures. This gel system was characterized by OM, SEM, IR and theology.展开更多
Silyl celluloses (SiC) were prepared by reacting cellulose with chloropropyltrichlorosilane (CPTCSi) and chloropropyltriethoxysilane (CPTESi) in LiCl/N,N-dimethylacetamide (DMAc). The Si content in the silyl cellulose...Silyl celluloses (SiC) were prepared by reacting cellulose with chloropropyltrichlorosilane (CPTCSi) and chloropropyltriethoxysilane (CPTESi) in LiCl/N,N-dimethylacetamide (DMAc). The Si content in the silyl cellulose could be controlled by adjustment of the molar ratio of silane and cellulose. FT-IR spectra showed that cellulose was readily reacted with the above two silane reagents, and the reactivity of CPTCSi is higher than that of CPTESi. It was presumed that the reaction process belongs to graft-polymerization. The results of differential thermal analysis (DTA) indicated that the thermostability of the materials produced increased with the increase of Si content in the sample. The acid resistance of the samples SiC in 1 mol/L HCl aqueous solution was improved significantly. When Si content was ca. 20%, the silyl cellulose has excellent thermostability, hydrophobicity, low density and stability in 1 mol/L HCl aqueous solution, owing to crosslinking of cellulose chain with silane.展开更多
主要研究以木浆为原料,以L iC l/DMAc为溶剂,制备可降解纤维素包装膜的技术与方法。通过改变浆粕浓度、凝固浴温度和浓度,可制备不同力学性能的纤维素包装膜。结果表明:纤维素浓度在7%时成膜性能最好;随着凝固浴浓度的增加,膜的力学性...主要研究以木浆为原料,以L iC l/DMAc为溶剂,制备可降解纤维素包装膜的技术与方法。通过改变浆粕浓度、凝固浴温度和浓度,可制备不同力学性能的纤维素包装膜。结果表明:纤维素浓度在7%时成膜性能最好;随着凝固浴浓度的增加,膜的力学性能先上升,后下降;相对于凝固浴浓度,凝固浴温度对膜力学性能有更大影响。展开更多
文摘This paper describes a triple-transforming gel system (gel-sol-gel') for the first time, which is a thermo-responsive and multi- component organogel prepared by β-cyclodextrin (β-CD), diphenylamine (DPA) and lithium chloride (LiCl) in N,N-dimethyla- cetamide (DMAC) in a suitable proportion based on the supramolecular interactions. In the triple-transfomaing gel system, a gel (gel A) could be formed by β-CD, DPA and LiCl in DMAC at room temperature based on stirring, then the gel could transform into a clear solution based on heating, and then the other gel (gel B) can be formed at a relatively high temperature (Tget, the gelation temperature by heating). The two gel states in the triple-transforming gel system have different microstructures. This gel system was characterized by OM, SEM, IR and theology.
基金This work was supported by the National Natural Science Foundation of China (59773026 and 59933070).
文摘Silyl celluloses (SiC) were prepared by reacting cellulose with chloropropyltrichlorosilane (CPTCSi) and chloropropyltriethoxysilane (CPTESi) in LiCl/N,N-dimethylacetamide (DMAc). The Si content in the silyl cellulose could be controlled by adjustment of the molar ratio of silane and cellulose. FT-IR spectra showed that cellulose was readily reacted with the above two silane reagents, and the reactivity of CPTCSi is higher than that of CPTESi. It was presumed that the reaction process belongs to graft-polymerization. The results of differential thermal analysis (DTA) indicated that the thermostability of the materials produced increased with the increase of Si content in the sample. The acid resistance of the samples SiC in 1 mol/L HCl aqueous solution was improved significantly. When Si content was ca. 20%, the silyl cellulose has excellent thermostability, hydrophobicity, low density and stability in 1 mol/L HCl aqueous solution, owing to crosslinking of cellulose chain with silane.
文摘主要研究以木浆为原料,以L iC l/DMAc为溶剂,制备可降解纤维素包装膜的技术与方法。通过改变浆粕浓度、凝固浴温度和浓度,可制备不同力学性能的纤维素包装膜。结果表明:纤维素浓度在7%时成膜性能最好;随着凝固浴浓度的增加,膜的力学性能先上升,后下降;相对于凝固浴浓度,凝固浴温度对膜力学性能有更大影响。