A simulation study was carried out by using dissipative particle dynamics(DPD) method to explore the effects of properties of coating chains, such as length, density, rigidity of polymer chains, as well as the distanc...A simulation study was carried out by using dissipative particle dynamics(DPD) method to explore the effects of properties of coating chains, such as length, density, rigidity of polymer chains, as well as the distance between nanoparticles on bonding reaction of coating chains grafted onto nanoparticles. The results show that bonding ratios of coated chains strongly depend on the length and density of coating chains. For nanoparticles with different coating densities, the optimum chain length for bonding reaction are varied. The rigidity of coating chains exhibits vigorous effects on bonding reaction that highly depends on chain lengths. DPD simulation can be used to study the bonding reaction between coated nanoparticles, which may help experimental synthesis of nanocomposites with excellent properties.展开更多
Perfluorooctanoyl modified poly(vinyl alcohol)s (FPVA) were prepared by means of substituting a small amount of hydroxyl groups on the backbone of poly(vinyl alcohol), for which the initial degree of polymerization is...Perfluorooctanoyl modified poly(vinyl alcohol)s (FPVA) were prepared by means of substituting a small amount of hydroxyl groups on the backbone of poly(vinyl alcohol), for which the initial degree of polymerization is equal to 1750. The substitution extent, defined by the number of substituting units in a chain, for the four FPVA samples was in the range of 0.5-5 perfluorooctanoyl groups per chain. The FPVA samples with the highest substitution extent still had good solubility in water. It was shown by experimental measurement at 30.0 +/- 0.1 degreesC that the surface tension of the aqueous solution of the highest substituted FPVA decreased to 16.6 mN/m at a higher concentration, e.g. about 0.1 g/mL. Obviously, macromolecules of FPVA exhibit a very strong tendency to adsorb at the air-water interface, because the hydrophobic perfluorooctanoyl groups in FPVA have a very high surface activity as they are in small molecular fluorinated surfactants. The chain conformation of such a model polymer adsorbed on the air-water interface was also discussed.展开更多
Surface ligands of colloidal quantum dots(QDs)have a profound influence on their surface states,which has been verified in the studies of the effect of ligand head groups on the photoluminescence(PL)properties of QDs....Surface ligands of colloidal quantum dots(QDs)have a profound influence on their surface states,which has been verified in the studies of the effect of ligand head groups on the photoluminescence(PL)properties of QDs.However,the investigation of the ligand chain length is limited.Here,we systematically explored the effect of chain length on the Ag_(2)Se QDs by selecting three ligands,1-octanethiol(OTT),1-dodecanethiol(DDT),and 1-hexadecanethiol(HDT),with diverse chain lengths.We found that the PL intensity of Ag_(2)Se QDs increased with the decrease of the ligand chain length due to the enhanced passivation of surface defects emerging from the robust QD-ligand interface binding affinity and the weaker hydrophobic chain–chain interaction.Subsequently,AgAuSe QDs terminated with OTT were obtained by alloying parent OTT-Ag_(2)Se QDs with Au precursor with a record absolute PL quantum yield(PLQY)of 87.2%at 970 nm,facilitating ultrasensitive in vivo angiography imaging in a nude mouse model.We expect that our finding of the important role of the ligand chain length on the optical properties of QDs will be suggestive to the design and synthesis of high-quality QDs,and also look forward to the clinical applications of the ultra-bright AgAuSe QDs.展开更多
通过对不同反离子碳链长度(n=2,4,6,8,10,12)的双癸基二甲基羧酸铵的表面活性及泡沫性能、乳化性能和润湿性能进行测定,探讨反离子碳链长度对季铵盐表面活性剂的表面活性及应用性能的影响。结果表明:随着反离子碳链长度(n=2,4,6,8,10,12...通过对不同反离子碳链长度(n=2,4,6,8,10,12)的双癸基二甲基羧酸铵的表面活性及泡沫性能、乳化性能和润湿性能进行测定,探讨反离子碳链长度对季铵盐表面活性剂的表面活性及应用性能的影响。结果表明:随着反离子碳链长度(n=2,4,6,8,10,12)的增加,双癸基二甲基羧酸铵的表面活性逐渐增强,其临界胶束浓度(cmc)逐渐减小,最低表面张力(γcmc)先降低后升高,当反离子碳链长度n=10时,γcmc达到最低,降低水表面张力20 m N/m的效能(pc20)逐渐增大,饱和吸附量(Гtotal)逐渐增大,单个分子占有面积(Am)逐渐减小;泡沫性能和乳化性能均随着反离子碳链长度的增加先增强后减弱;润湿性能随着反离子碳链长度的增加而逐渐增强。展开更多
以蜡质玉米淀粉为原料,通过单因素试验和响应面设计法,优化了普鲁兰酶酶解制备弹簧糊精的工艺参数,并建立数学模型,得到的最佳工艺参数为:p H 4.96、酶解温度53.32℃、酶用量420 U/g、酶解时间6 h,此工艺条件下制备的弹簧糊精纯度为99.2...以蜡质玉米淀粉为原料,通过单因素试验和响应面设计法,优化了普鲁兰酶酶解制备弹簧糊精的工艺参数,并建立数学模型,得到的最佳工艺参数为:p H 4.96、酶解温度53.32℃、酶用量420 U/g、酶解时间6 h,此工艺条件下制备的弹簧糊精纯度为99.2%。测定了制备的弹簧糊精的链长分布,实验结果表明聚合度(以DP表示)小于60的弹簧糊精占总弹簧糊精质量分数的95.5%,其中聚合度为DP 6~12、13~24、25~36、37~60的弹簧糊精质量分数分别为24.40%、45.08%、19.60%及10.92%。展开更多
基金Funded by the National Natural Science Foundation of China(Nos.20974001,21174001,51273001,and 51403001)
文摘A simulation study was carried out by using dissipative particle dynamics(DPD) method to explore the effects of properties of coating chains, such as length, density, rigidity of polymer chains, as well as the distance between nanoparticles on bonding reaction of coating chains grafted onto nanoparticles. The results show that bonding ratios of coated chains strongly depend on the length and density of coating chains. For nanoparticles with different coating densities, the optimum chain length for bonding reaction are varied. The rigidity of coating chains exhibits vigorous effects on bonding reaction that highly depends on chain lengths. DPD simulation can be used to study the bonding reaction between coated nanoparticles, which may help experimental synthesis of nanocomposites with excellent properties.
基金The project was supported by the National Natural Science Foundation of China (No.29774016).
文摘Perfluorooctanoyl modified poly(vinyl alcohol)s (FPVA) were prepared by means of substituting a small amount of hydroxyl groups on the backbone of poly(vinyl alcohol), for which the initial degree of polymerization is equal to 1750. The substitution extent, defined by the number of substituting units in a chain, for the four FPVA samples was in the range of 0.5-5 perfluorooctanoyl groups per chain. The FPVA samples with the highest substitution extent still had good solubility in water. It was shown by experimental measurement at 30.0 +/- 0.1 degreesC that the surface tension of the aqueous solution of the highest substituted FPVA decreased to 16.6 mN/m at a higher concentration, e.g. about 0.1 g/mL. Obviously, macromolecules of FPVA exhibit a very strong tendency to adsorb at the air-water interface, because the hydrophobic perfluorooctanoyl groups in FPVA have a very high surface activity as they are in small molecular fluorinated surfactants. The chain conformation of such a model polymer adsorbed on the air-water interface was also discussed.
基金the National Natural Science Foundation of China(Nos.21934007 and 22001262)the Strategic Priority Research Program of Chinese Academy of Sciences(No.XDB36000000)+1 种基金the Natural Science Foundation of Jiangsu Province(No.BK20200254)China Postdoctoral Science Foundation(No.2019M661966).
文摘Surface ligands of colloidal quantum dots(QDs)have a profound influence on their surface states,which has been verified in the studies of the effect of ligand head groups on the photoluminescence(PL)properties of QDs.However,the investigation of the ligand chain length is limited.Here,we systematically explored the effect of chain length on the Ag_(2)Se QDs by selecting three ligands,1-octanethiol(OTT),1-dodecanethiol(DDT),and 1-hexadecanethiol(HDT),with diverse chain lengths.We found that the PL intensity of Ag_(2)Se QDs increased with the decrease of the ligand chain length due to the enhanced passivation of surface defects emerging from the robust QD-ligand interface binding affinity and the weaker hydrophobic chain–chain interaction.Subsequently,AgAuSe QDs terminated with OTT were obtained by alloying parent OTT-Ag_(2)Se QDs with Au precursor with a record absolute PL quantum yield(PLQY)of 87.2%at 970 nm,facilitating ultrasensitive in vivo angiography imaging in a nude mouse model.We expect that our finding of the important role of the ligand chain length on the optical properties of QDs will be suggestive to the design and synthesis of high-quality QDs,and also look forward to the clinical applications of the ultra-bright AgAuSe QDs.
文摘通过对不同反离子碳链长度(n=2,4,6,8,10,12)的双癸基二甲基羧酸铵的表面活性及泡沫性能、乳化性能和润湿性能进行测定,探讨反离子碳链长度对季铵盐表面活性剂的表面活性及应用性能的影响。结果表明:随着反离子碳链长度(n=2,4,6,8,10,12)的增加,双癸基二甲基羧酸铵的表面活性逐渐增强,其临界胶束浓度(cmc)逐渐减小,最低表面张力(γcmc)先降低后升高,当反离子碳链长度n=10时,γcmc达到最低,降低水表面张力20 m N/m的效能(pc20)逐渐增大,饱和吸附量(Гtotal)逐渐增大,单个分子占有面积(Am)逐渐减小;泡沫性能和乳化性能均随着反离子碳链长度的增加先增强后减弱;润湿性能随着反离子碳链长度的增加而逐渐增强。