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Merck
CN

561967

Sigma-Aldrich

聚(4-苯乙烯磺酸钠) 溶液

average Mw ~200,000, 30 wt. % in H2O

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别名:
PSS, 聚(4-苯乙烯磺酸) 钠盐
线性分子式:
(C8H7NaO3S)n
CAS号:
MDL编号:
UNSPSC代码:
12162002
NACRES:
NA.23

分子量

average Mw ~200,000

质量水平

浓度

30 wt. % in H2O

折射率

n20/D ~1.3961

pH值(酸碱度)

~6.4

粘度

~118 cP

密度

1.1471 g/mL at 25 °C

InChI

1S/C8H8O3S/c1-2-7-3-5-8(6-4-7)12(9,10)11/h2-6H,1H2,(H,9,10,11)

InChI key

MAGFQRLKWCCTQJ-UHFFFAOYSA-N

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相关类别

一般描述

聚(4-苯乙烯磺酸钠)(PSS)是一种强阴离子聚电解质,在其主链上具有许多负电荷。在这种电解质中,离子电荷在很大程度上与pH条件无关。 PSS沉积物可进行层层组装。静电吸引作用可交替吸附聚阳离子和聚阴离子,以形成聚电解质多层(PEM)。 由于逐层组装,与原始石墨氧化物相比,PSS石墨氧化物表现出较高的双电层电容性能。 纳米颗粒上的PSS涂层可抑制团聚的形成。

应用


  • Stabilization of low-cost phase change materials for thermal energy storage applications: This study explores the potential of Poly(sodium 4-styrenesulfonate) in stabilizing low-cost phase change materials, enhancing thermal energy storage capabilities (DO Akamo et al., 2023).

  • UPCONVERTING NANOPARTICLES FOR BIOSENSING AND BIOIMAGING: Research on Poly(sodium 4-styrenesulfonate) utilized in biosensing and bioimaging via upconverting nanoparticles, highlighting its applications in high-temperature bioanalytical settings (V ANDRIGO, 2023).

  • Chain Dynamics in a Polyelectrolyte Solution Under Shear: A Rheological NMR Investigation: Examines the chain dynamics of Poly(sodium 4-styrenesulfonate) under shear, providing insights into its rheological behavior (S Bartosch et al., 2023).

  • Molecular conformation of polyelectrolytes inside Layer-by-Layer assembled films: This research delves into the structural properties of Poly(sodium 4-styrenesulfonate) within multilayered assemblies, contributing to materials science (P Gutfreund et al., 2023).

  • Colloidal nanomedicines with prolonged release of chloroquine based on interactions with aromatic polymers after mixing two liquids: from in silico simulation of : Discusses the development of colloidal nanomedicines using Poly(sodium 4-styrenesulfonate), showcasing prolonged drug release capabilities (MG Villamizar-Sarmiento et al., 2024).

特点和优势

阴离子聚电解质

WGK

WGK 2

闪点(°F)

Not applicable

闪点(°C)

Not applicable

个人防护装备

Eyeshields, Gloves, multi-purpose combination respirator cartridge (US)


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Lulu Han et al.
Langmuir : the ACS journal of surfaces and colloids, 28(1), 193-199 (2011-11-29)
Poly(sodium 4-styrenesulfonate) (PSS)/poly(diallyldimethylammonium chloride) (PDADMAC) multilayers were treated with 1-5 M NaCl solutions, resulting in continuous changes in the physicochemical properties of the multilayers. Significant mass loss was observed when the salt concentration was higher than 2 M and reached
Thidarat Angwarawong et al.
Dental materials journal, 30(2), 158-169 (2011-03-23)
Polyelectrolyte multilayer (PEM) film can modify the surface properties of materials to improve cellular responses. In this study poly(diallyldimethylammonium chloride) (PDADMAC), poly(sodium 4-styrene sulfonate) (PSS) and poly(4-styrenesulfonic acid-co-maleic acid) sodium salt (PSS-co-MA) were assembled into PEM {(PDADMAC/PSS)(4)/PDADMAC+PSS-co-MA} film on glass
Yu-Fen Huang et al.
Langmuir : the ACS journal of surfaces and colloids, 23(25), 12777-12781 (2007-11-02)
In this article, we report a simple approach for selectively sensing Fe2+ ions using CTAB-stabilized Au-Ag nanorods (CTAB-Au-Ag NRs) in the presence of poly(sodium 4-styrenesulfonate) (PSS). The prepared CTAB-Au-Ag NRs exhibit an intense longitudinal surface plasmon resonance absorption (>10(9) M(-1)
Hae-Kyung Jeong et al.
ACS nano, 4(2), 1162-1166 (2010-01-27)
We propose a new material for high power and high density supercapacitors with excellent cycle stability. Graphite oxide (PSS-GO) intercalated with poly(sodium 4-styrensulfonate) showed high performance of electric double layer capacitance (EDLC) compared to that of the pristine graphite oxide.
Stable aqueous dispersions of graphitic nanoplatelets via the reduction of exfoliated graphite oxide in the presence of poly (sodium 4-styrenesulfonate).
Stankovich S, et al
Journal of Materials Chemistry, 16(2), 155-158 (2006)

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We present an article that discusses two applications in particular; first, using these layers as polyelectrolyte membranes to control permeability.

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