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-nonyl N,N-dimethylammonio)-propyl sulfate, present in isotropic solutions above its upper critical solution temperature丹治 珠緒*; 楠 裕翔*; 中川 太一; 高瀬 つぎ子*; 上田 祐生; 元川 竜平; Hinze, W. L.*; 高貝 慶隆*
Langmuir, 41(21), p.13184 - 13191, 2025/06
被引用回数:0 パーセンタイル:0.00(Chemistry, Multidisciplinary)The thermosensitive zwitterionic surfactant, C
APSO
, in solution displays a liquid-liquid miscibility gap exhibiting an upper critical solution temperature (UCST) in contrast to the lower critical temperature as is characteristic of nonionic surfactants. In this study, the micellar and aggregational properties of this surfactant in its homogeneous isotropic one phase region above the UCST was examined using surface tension and small-angle neutron scattering (SANS) measurements. The critical micelle concentration (CMC) of C
APSO
was determined in both H
O and D
O at 40 and 70
C as well as the cloud point temperature determined over a surfactant concentration range of 0.05-0.70 M. The CMC values were in the range of 48-55 mM (40
C) and 61-65 mM (70
C), respectively. The SANS data was analyzed using a core-shell model in which the C
APSO
is represented by a nonyl hydrophobic core and polar [(N,N-dimethylammonio)-propylsulfate] headgroup shell. Results revealed that the C
APSO
micelle aggregates are spherical in shape with a core diameter of 2.56 nm and shell thickness of 2.28 nm and an aggregation number of 30 at 40
C. The data at 70
C indicated that the aggregates were slightly larger in size, i.e., core diameter of 2.70 nm and shell thickness of 2.52 nm with an aggregation number of 35. At a fixed surfactant concentration, the aggregation number and size slightly decreased with a decrease in temperature from 70 to 40
C.
中川 太一; 鈴木 怜花*; 松枝 誠; 寺島 元基; Hinze, W. L.*; 高貝 慶隆*
Solvent Extraction Research and Development, Japan, 31(2), p.49 - 56, 2024/00
The zwitterionic surfactant 3-(nonyldimethylammonio)-propyl sulfate (C
-APSO
) exhibits unique reversible temperature-dependent phase separation properties, which can be used for the extraction of water-miscible negatively charged gold nanoparticles (AuNPs) without any aggregation at high concentrations using only temperature change. This study investigated the extraction behaviors and properties of AuNPs transferred from the water phase to a small volume of the surfactant-rich phase. The AuNPs retained both their original shapes and sizes after temperature-dependent phase separation step. In addition, the concentration of AuNPs was enriched by a factor of 150 in the surfactant-rich phase without any changes in the sizes and shapes of AuNPs.