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Conducting polymers chemical stabilization

Even though most of the above-mentioned polymer membranes show very good ion selectivity and ion conductivity, their chemical stability remains one of the most critical issues. The introduction of ion exchange groups in hydrocarbon membranes could especially accelerate the membrane degradation. To solve these problems, porous membranes were first introduced... [Pg.357]

Development of conducting polymer using stabilized gold nanoparticles for chemical sensor... [Pg.1745]

Since one of the main chemical and technological problems of conducting polymers is their low stability for long-term applications, and since storage capacity is a quantification of the basic property of these... [Pg.326]

Chemical and electrochemical techniques have been applied for the dimensionally controlled fabrication of a wide variety of materials, such as metals, semiconductors, and conductive polymers, within glass, oxide, and polymer matrices (e.g., [135-137]). Topologically complex structures like zeolites have been used also as 3D matrices [138, 139]. Quantum dots/wires of metals and semiconductors can be grown electrochemically in matrices bound on an electrode surface or being modified electrodes themselves. In these processes, the chemical stability of the template in the working environment, its electronic properties, the uniformity and minimal diameter of the pores, and the pore density are critical factors. Typical templates used in electrochemical synthesis are as follows ... [Pg.189]

Non-ionic polymers have also been blended with ionic block copolymers. Poly(vinyl phosphanate)-l7-polystyrene and PS-l -SPS have been blended with PPO. In both cases, improvements were seen in MeOH permeability over that of fhe unmodified block copolymers and conductivity values dropped as a function of increasing PPO confenf. PVDF has been blended wifh SEES in order fo improve its mechanical and chemical stability, but aggregation was found fo be a problem due fo incompafibility between components. However, it was found that a small amount (2 wt%) of a methyl methacrylate-butyl acrylate-methyl methacrylate block copolymer as com-patibilizer not only led to greater homogeneity but also improved mechanical resistance, water management, and conductivity. ... [Pg.162]

Apart from the insulating polymeric matrices, conductive polymers such as polypyrrole and polyaniline have been used as nanocomposite electrodes by chemical or electrochemical polymerization [13, 17, 116, 117]. Such materials provide high conductivity and stability. However, the use of insulating polymers can be more advantageous than the conductive polymers when employed in cyclic voltammetry. [Pg.139]

The industrial production of copolymers of trioxane with ethylene oxide or di-oxolane (1-5%) is conducted as a bulk polymerization in special equipment. The incorporation of small amounts of C-C bonds into the C-0 chain has a remarkable effect on the thermal and chemical stability. In homopolymers the thermal decomposition starts at the semiacetal end groups ( unzipping ) and leads to a complete destruction of the polymer chain, whereas this reaction stops in copolymers already at the first C-C bond. A thermally stable OH end group is thus formed which, in addition, contributes to a much better alkali resistance compared to ester group-terminated homopolymers (see Examples 3-40 and 5-13). [Pg.209]


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See also in sourсe #XX -- [ Pg.279 , Pg.280 ]




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Chemical Conduction

Chemical Conductivity

Chemical stability

Chemical stabilization

Chemical stabilization of conducting polymers

Polymer chemical

Polymer stabilization

Polymer stabilization stabilizers

Polymers chemical stability

Stability conductance

Stability conductivity

Stabilizer polymer

Stabilizing polymers

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