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71.
72.
辐照对聚己内酯结构和性能的影响 总被引:5,自引:2,他引:5
研究了γ 辐照对不同分子量的聚己内酯 (PCL)的力学性能、热性能、结晶行为的影响 ,在此基础上 ,研究了辐射交联后的PCL的形状记忆行为 .研究结果表明 ,PCL的分子量越大 ,辐射交联所需的凝胶化剂量越低 .溶胶分数S +S1 2 与 1 D的关系很好地符合Charlesby Pinner关系式 ,说明PCL的辐射交联属于无规交联 .剂量对PCL的力学性能影响显著 ,剂量越大 ,抗张强度和断裂伸长率下降越多 ,但分子量较高的PCL的抗张强度受剂量的影响较小 .DMA分析表明 ,聚己内酯辐照交联后的弹性模量和耐热性能显著提高 .交联度较高的PCL表现出高弹态 ,可以拉伸 ,并具有较好的形状记忆行为 .DSC分析表明 ,辐射交联使PCL的结晶度有所增加 ,但也使结晶熔点有所降低 相似文献
73.
DeShengYU LiangHUANG HuiLIANG PingGONG 《中国化学快报》2005,16(7):875-878
A series of novel oxazolidinone analogues were prepared by a new and efficient synthetic method and their antibacterial activities were determined. These compounds wer echaracterized by LC-MS and ^1H NMR. 相似文献
74.
研究了硫酸铵存在下硫氰酸铵-罗丹明B-H2O的液-固体系浮选分离铜(Ⅱ)的行为及其与常见离子分离的条件.结果表明,当(NH4)2SO4用量为1.0 g,0.1 mol·L-1硫氰酸铵溶液1.5 mL和0.001 mol·L-1罗丹明B溶液2.0 mL时,铜(Ⅱ)以不溶于水的三元离子缔合物(RhB)2[Cu(SCN)4]形式在液-固两相界面定量浮选析出,而Cdd2、Mn2+、Co2+、Ni2+、Al3+等离子在此条件下不被浮选,实现了铜(Ⅱ)与这些离子的定量分离,对合成水样中微量铜(Ⅱ)进行的定量浮选分离测定,浮选富集的平均回收率达101.4%. 相似文献
75.
用3%三氯醋酸从榆耳子实体中提取出水溶性粗多糖,经乙醇分级、SepharoseCL6B纯化得到单一组分GIA.SepharoseCL6B柱层析测得GIA的相对分子质量为1 26×105.GC分析表明GIA由Man和Glc两种单糖构成,其物质的量比为1 42∶1.多糖GIA经部分酸水解、高碘酸氧化、Smith降解和甲基化分析其结构主要为β(1→3)Man和β(1→3)Glc,且在6~0处构成分枝结构,平均每11个己糖残基有2个分枝,多糖GIA的支链部分由(1→4)Glc构成,末端残基为Man,Glc. 相似文献
76.
MingTaoLIANG DeXinWANG 《中国化学快报》2002,13(3):199-200
Some dehydropeptide analogues were directly synthesized by the reaction of unsaturated oxazolones with free amino acids. 相似文献
77.
78.
红霉素A9-(1-异丙氧基环已基)肟的合成及其晶体结构 总被引:6,自引:1,他引:6
合成表征了红霉素A9-(1-异丙氧基环已基)肟的E和Z异构体,并在丙酮-水混 合溶液中培养出了前者的单晶,X射线衍射表明,其结构为正交晶系,P2_12_12_1 空间群,晶胞参数:a=2.3101(5) nm, b=2.3761(5) nm, c=0.97066(19)nm, V=5. 3279(8) nm~3,Z=4,μ=0.088 mm~(-1),F(000)=2064, D_c=1.176 g/cm~3。E-红 霉素A 9-(1-异丙氧基环已基)肟的晶体结构图明显表明1-异丙氧基环已基保护基 确实使十四元大环的构象发生了扭曲,使6-OH的周围空间不再拥挤,从而导致6- OH甲基化的选择性提高。 相似文献
79.
The aggregation interaction between reduced-denatured egg white lysozymes during refolding procedure in urea solution was studied by means of reducing and non-reducing protein electrophoreses. Results of non-reducing sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE) of the supernatant and aggregate precipitate formed in refolding process show that except being refolded to native egg white lysozymes, the reduced-denatured lysozymes can also form the aggregates with molecular weights (MW) being separately about 30.0 and 35.0 kD, while the reducing SDS-PAGE and the refolding results in the presence of sodium dodecyl sulphate show that these aggregates are formed chiefly through the misconnection of disulfide bonds between the reduced-denatured lysozymes, and the aggregate precipitates are formed through the non-covalent interactions between the aggregates with molecular weight being about 30.0 kD. From the results of electrophoresis and size-exclusion chromatographic analyses, it can be inferred that the aggregates with molecular weights being about 30.0 and 35.0 kD are bi-molecular and tri-molecular egg white lysozyme aggregates, respectively. And finally, a suggested refolding mechanism of reduced-denatured egg white lysozymes in urea solution was presented. 相似文献
80.
The novel applications of molybdenum disulfide in recent research were reviewed, such as in lubricant, catalyst and photoelectrochemical solar cells. Recently, we found that LiMoS2 is a good candidate for new anode materials for lithium ion batteries with high lithium storage capacity.Here, the anode material LiMoS2 was synthesized by a hydrothermal method at 150℃ and the electrochemical characterization as an anode material for lithium ion batteries was examined.put in Teflon-lined stainless steel autoclaves of capacity 40 mL. Distilled water was used to fill the autoclaves to 70 % of the total volume. The autoclaves were maintained at 150℃ for 24 h and then cooled naturally. The resulting dark-gray powders were filled and washed with distilled water,diluted hydrochloric acid and ethanol, successively. The final products were dried at 80℃ for 24 h.The powder X-ray diffraction pattern showed the prepared LiMoS2 was amorphous structure. A test cell using LiMoS2 as the active material was discharged and charged between 3 and 0.01 V with respect to Li metal at a constant current density of C/5 (that is, one lithium per formula unit in 5 hours). During the first discharge, the potential rapidly drops to reach a large plateau at 2.2 V, then slowly drops to the other plateau at 0.8 V, and then continuously decreases down to 0.01V. There is only a plateau at 1.35 V in the subsequent discharge curves. The plateaus of charge potential appear at about 1.9 V.The irreversible loss was 41% in the first cycle. The ratio of discharge and charge is more than 99%in the subsequent cycles. Moreover, the ratio of discharge and charge almost reaches 100% after thedemonstrated that LiMoS2 has a very high capacity and a good cycle-ability as an anode material forlithium ion batteries. 相似文献