Influence of salt on assembly and compression of PDADMAC/PSSMA polyelectrolyte multilayers
文献信息
Xiao Gong, Changyou Gao
Influence of NaCl and NaBr and their concentration on assembly of polyelectrolyte multilayers and their compression behavior was studied using poly(diallyldimethylammonium chloride) (PDADMAC) and poly(4-styrenesulfonic acid-co-maleic acid, 1 : 1 SS:MA) sodium salt (PSSMA 1 : 1) as the building blocks. Stepwise growth of the PSSMA/PDADMAC multilayers was characterized by a quartz crystal microbalance with dissipation (QCM-D), revealing faster and slower growth of the layer thickness in higher concentration of NaCl and NaBr solutions, respectively. Moreover, QCM-D, ellipsometry and scanning force microscopy (SFM) measurements demonstrated that the multilayers were highly hydrated with a factor of 3 ∼ 9 in a wet state depending on the type and concentration of the salts used during the assembly. The type and concentration of the salts used during the assembly also influenced greatly the compression ratio of the polyelectrolyte multilayers, i.e. the compression ratio increased along with the increase of NaCl concentration, whereas it was constant when NaBr was used. The friction force of the PEI(PSSMA/PDADMAC)7 multilayers measured by SFM showed that the force peaks gradually shifted from low to high scanning frequency along with the increase of NaCl concentration, illustrating the gradual softening of the multilayers. By contrast, the peak positions in the friction force curves for all the multilayers assembled in NaBr solution kept unchanged regardless of the NaBr concentration. Contrast experiments further revealed that the compression ratios, masses in wet and wet thicknesses of the multilayers alternatingly treated in Cl− and in Br− solutions were all reversible.
相关文献
Molecular insight into carboxylic acid–alkali metal cations interactions: reversed affinities and ion-pair formation revealed by non-linear optics and simulations
Adrien Sthoer, Jana Hladílková, Mikael Lund, Eric Tyrode
DOI: 10.1039/C9CP00398C
Modeling the effect of surface CO coverage on the electrocatalytic reduction of CO2 to CO on Pd surfaces
Jian Liu, Bo Yang
DOI: 10.1039/C8CP07427E
Simple diphenylamine based D–π–A type sensitizers/co-sensitizers for DSSCs: a comprehensive study on the impact of anchoring groups
Rajalakshmi Kesavan, Islam M. Abdellah, Surya Prakash Singh, Ahmed El-Shafei, Airody Vasudeva Adhikari
DOI: 10.1039/C9CP01032G
Proton transport properties of proton-conducting phosphate glasses at their glass transition temperatures
Takahisa Omata, Satoshi Tsukuda, Tomohiro Ishiyama, Junji Nishii, Toshiharu Yamashita, Hiroshi Kawazoe
DOI: 10.1039/C9CP01502G
Sudden polarization and zwitterion formation as a pseudo-Jahn–Teller effect: a new insight into the photochemistry of alkenes
Ya Wang, Yang Liu, Isaac B. Bersuker
DOI: 10.1039/C9CP01023H
Deviations from Beer's law on the microscale – nonadditivity of absorption cross sections
Sonja Höfer
DOI: 10.1039/C9CP01987A
How ions block the single-file water transport through a carbon nanotube
Zhenglong Su, Jingyi Chen, Yunzhen Zhao, Jiaye Su
DOI: 10.1039/C9CP01714C
Non-equilibrium adatom thermal state enables rapid additive nanomanufacturing
Matthew R. Henry, Songkil Kim
DOI: 10.1039/C9CP01478K
Influence of the hydrophobic domain on the self-assembly and hydrogen bonding of hydroxy-amphiphiles
Valery Andrushchenko, Walter Pohle
DOI: 10.1039/C9CP01475F
Alkaline manganese electrochemistry studied by in situ and operando spectroscopic methods – metal dissolution, oxide formation and oxygen evolution
Martin Rabe, Cigdem Toparli, Ying-Hsuan Chen, Olga Kasian
DOI: 10.1039/C9CP00911F
您可能还喜欢
十二烷基磺酸钠(CAS号:2386-53-0)的主要用途是什么?
十二烷基磺酸钠主要用作表面活性剂,广泛应用于洗涤剂、肥皂、化妆品和工业清洁产品中。它能有效去除油脂和污垢,常用于制造洗发水、沐浴露、洗衣粉和金属清洗剂。此外,它...
5-羟基异喹啉(CAS号:2439-04-5)适用哪些法规指南?
5-羟基异喹啉作为化学品,主要适用的法规包括GHS全球化学品统一分类和标签制度,REACH法规等。GHS将5-羟基异喹啉分类为皮肤腐蚀/刺激类别2,严重眼损伤/...
在合成中是否有FIDAS-5 | Wnt(CAS号:1391934-98-7)的替代品?
合成中可以考虑使用类似结构的化合物,如4-[(E)-2-(2-氯-6-氟苯基)乙烯基]-N-甲基苯胺的类似物或衍生物作为替代品。这类化合物可能具有相似的生物活性...
(R)-tert-Butyl 2-(5-bromo-1H-imidazol-2-yl)pyrrolidine-1-carboxylate(CAS号:1370600-56-8)通常如何合成?
该化合物通常通过如下步骤合成:首先,将4-溴-1H-咪唑与对甲苯磺酸在乙酸乙酯中反应,得到中间体5-溴-1H-咪唑-2-甲酸乙酯。然后,该中间体与2-甲基-2-...
处理4-(吡咯烷-1-基)环己酮(CAS号:10421-18-8)时应注意哪些实验室安全事项?
处理4-(吡咯烷-1-基)环己酮时,应佩戴手套、护目镜和实验室外套,以防止直接接触或吸入。在通风橱中操作,确保良好的通风条件。一旦发生泄漏,应立即清理并使用适当...
如何处理含有异麦芽糖醇(CAS号:534-73-6)的废料?
含有异麦芽糖醇的废液应首先进行分类收集,避免与其他化学品混合。对于小规模的废液,可以通过焚烧或加入特定的化学试剂进行无害化处理。对于大规模的废液,建议联系专业的...
7-甲基壬酸(CAS号:41653-89-8)的主要用途是什么?
7-甲基壬酸主要用于有机合成领域,作为合成其他化合物的原料。此外,它还可能作为一种中间体用于药品制造和香料合成,但具体用途需要根据其具体的化学结构和反应特性来确...
N-甲氧基-N-甲基甲基吡啶羧酰胺(CAS号:148493-07-6)应用于哪些行业?
N-甲氧基-N-甲基甲基吡啶羧酰胺在医药领域有一定的应用,作为一种潜在的药物前体或中间体。此外,该化合物也可能应用于聚合物改性剂、传感器材料等。由于其独特的化学...
什么是惕各酸香叶酯(CAS号:7785-33-3)?
惕各酸香叶酯是一种化合物,化学名称为(2E)-3,7-二甲基-2,6-辛二烯-1-基(2E)-2-甲基-2-丁烯酸酯。它是一种具有香叶香气的化合物,分子式为C1...
1-环丁基哌嗪(CAS号:132800-13-6)安全吗?
1-环丁基哌嗪在适当的操作条件下是相对安全的,但如遇明火或高热会释放有毒气体。操作时应佩戴防护眼镜和手套,避免吸入或接触皮肤、眼睛。
来源期刊
Physical Chemistry Chemical Physics

Physical Chemistry Chemical Physics (PCCP) is an international journal co-owned by 19 physical chemistry and physics societies from around the world. This journal publishes original, cutting-edge research in physical chemistry, chemical physics and biophysical chemistry. To be suitable for publication in PCCP, articles must include significant innovation and/or insight into physical chemistry; this is the most important criterion that reviewers and Editors will judge against when evaluating submissions. The journal has a broad scope and welcomes contributions spanning experiment, theory, computation and data science. Topical coverage includes spectroscopy, dynamics, kinetics, statistical mechanics, thermodynamics, electrochemistry, catalysis, surface science, quantum mechanics, quantum computing and machine learning. Interdisciplinary research areas such as polymers and soft matter, materials, nanoscience, energy, surfaces/interfaces, and biophysical chemistry are welcomed if they demonstrate significant innovation and/or insight into physical chemistry. Joined experimental/theoretical studies are particularly appreciated when complementary and based on up-to-date approaches.













![4-[2-(Trichlorosilyl)ethyl]benzenesulfonyl chloride structure 4-[2-(Trichlorosilyl)ethyl]benzenesulfonyl chloride structure](https://cnstatic.chemtradehub.com/structs/797/79793-00-3-de16.webp)
