Javascript must be enabled to continue!
Poly(Vinyl Alcohol) Chemical-Dehydration to Polyacetylene By Fuming Sulfuric Acid
View through CrossRef
Recently, polyacetylene (PA) and polyenes (polyvinylenes) are receiving renewed scientific attention due to their unique physical properties potentially useful also for a number of non-electrical applications (e.g., hydrogen storage, drug delivery, adsorbent of organic compounds in aqueous systems, gas and liquid separation, oxygen absorbent in gas analysis, etc.). These chemical compounds can be obtained in form of a polyacetylene-PVOH copolymers simply by chemical dehydration of poly(vinyl alcohol) (PVOH), which is a very common type of polymer, widely used in different technological areas. This simple chemical reaction for the large-scale synthesis of PA/polyvinylenes has been investigated by reacting PVOH with fuming sulfuric acid at room temperature. In this process, PVOH, shaped in form of film, is dipped in fuming sulfuric acid (i.e., H2SO4 at 95-97%) and, after complete chemical-dehydration, it has been mechanically removed from the liquid phase by using a nylon sieve. This reduction process leads to a substantial PVOH film conversion to PA as it has been proved by infrared spectroscopy (ATR-mode). Indeed, the ATR spectrum of the reaction product included all characteristic absorption bands of PA. The reaction product has been also characterized by differential scanning calorimetry (DSC) and absorption optical spectroscopy (UV-Vis) in order to evidence respectively its solid-state thermal isomerization (cis-PA conversion to trans-PA) and presence in the structure of conjugated carbon-carbon double bonds of various extensions.
Title: Poly(Vinyl Alcohol) Chemical-Dehydration to Polyacetylene By Fuming Sulfuric Acid
Description:
Recently, polyacetylene (PA) and polyenes (polyvinylenes) are receiving renewed scientific attention due to their unique physical properties potentially useful also for a number of non-electrical applications (e.
g.
, hydrogen storage, drug delivery, adsorbent of organic compounds in aqueous systems, gas and liquid separation, oxygen absorbent in gas analysis, etc.
).
These chemical compounds can be obtained in form of a polyacetylene-PVOH copolymers simply by chemical dehydration of poly(vinyl alcohol) (PVOH), which is a very common type of polymer, widely used in different technological areas.
This simple chemical reaction for the large-scale synthesis of PA/polyvinylenes has been investigated by reacting PVOH with fuming sulfuric acid at room temperature.
In this process, PVOH, shaped in form of film, is dipped in fuming sulfuric acid (i.
e.
, H2SO4 at 95-97%) and, after complete chemical-dehydration, it has been mechanically removed from the liquid phase by using a nylon sieve.
This reduction process leads to a substantial PVOH film conversion to PA as it has been proved by infrared spectroscopy (ATR-mode).
Indeed, the ATR spectrum of the reaction product included all characteristic absorption bands of PA.
The reaction product has been also characterized by differential scanning calorimetry (DSC) and absorption optical spectroscopy (UV-Vis) in order to evidence respectively its solid-state thermal isomerization (cis-PA conversion to trans-PA) and presence in the structure of conjugated carbon-carbon double bonds of various extensions.
Related Results
Problematyka wczesnego alkoholizmu
Problematyka wczesnego alkoholizmu
The Problem of Early Alcoholizm The group of 50 repeatedly convicted recidivists, dealt with in this article, aged 38 on the average, deserves particular attention, first of all ...
Poly(Vinyl Alcohol) Chemical-Dehydration to Polyacetylene By Fuming Sulfuric Acid
Poly(Vinyl Alcohol) Chemical-Dehydration to Polyacetylene By Fuming Sulfuric Acid
Recently, polyacetylene (PA) and polyenes (polyvinylenes) are receiving renewed scientific attention due to their unique physical properties potentially useful also for a number of...
Final Report of the Safety Assessment of Alcohol Denat., Including SD Alcohol 3-A, SD Alcohol 30, SD Alcohol 39, SD Alcohol 39-B, SD Alcohol 39-C, SD Alcohol 40, SD Alcohol 40-B, and SD Alcohol 40-C, and the Denaturants, Quassin, Brucine Sulfate/Brucine,
Final Report of the Safety Assessment of Alcohol Denat., Including SD Alcohol 3-A, SD Alcohol 30, SD Alcohol 39, SD Alcohol 39-B, SD Alcohol 39-C, SD Alcohol 40, SD Alcohol 40-B, and SD Alcohol 40-C, and the Denaturants, Quassin, Brucine Sulfate/Brucine,
Alcohol Denat. is the generic term used by the cosmetics industry to describe denatured alcohol. Alcohol Denat. and various specially denatured (SD) alcohols are used as cosmetic i...
Polyacetylene Prepared by Chemical Dehydration of Poly(vinyl Alcohol)
Polyacetylene Prepared by Chemical Dehydration of Poly(vinyl Alcohol)
Recently, polyacetylene (PA) is receiving a renewed scientific attention due to its electrical properties potentially useful for energy applications (e.g., fabrication of electrode...
Polyacetylene Prepared by Chemical Dehydration of Poly(vinyl Alcohol)
Polyacetylene Prepared by Chemical Dehydration of Poly(vinyl Alcohol)
Recently, polyacetylene (PA) is receiving a renewed scientific attention due to its electrical properties potentially useful for energy applications (e.g., fabrication of electrode...
Polyacetylene Prepared by Chemical Dehydration of Poly(vinyl Alcohol)
Polyacetylene Prepared by Chemical Dehydration of Poly(vinyl Alcohol)
Recently, polyacetylene (PA) is receiving a renewed scientific attention due to its electrical properties potentially useful for energy applications (e.g., fabrication of electrode...
The role of the alcohol biomarker PEth in hypertension management in primary care
The role of the alcohol biomarker PEth in hypertension management in primary care
<p dir="ltr">Background and aim</p><p dir="ltr">Alcohol increases the risk of developing hypertension and of blood pressure remaining poorly controlled. To preven...
The role of the alcohol biomarker PEth in hypertension management in primary care
The role of the alcohol biomarker PEth in hypertension management in primary care
<p dir="ltr">Background and aim</p><p dir="ltr">Alcohol increases the risk of developing hypertension and of blood pressure remaining poorly controlled. To preven...

