2015
DOI: 10.1016/j.matchemphys.2015.07.044
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Synthesis of Novel crosslinked Poly(azomethine-urethane)s: Photophysical and thermal properties

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Cited by 23 publications
(9 citation statements)
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“…Then, the mixture was cooled to room temperature and it was washed with MeCN (2 × 50 mL), MeOH (2 × 50 mL), and distilled water (3 × 100 mL). Then, it was dried at 60°C under vacuum (Figure ) …”
Section: Methodsmentioning
confidence: 99%
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“…Then, the mixture was cooled to room temperature and it was washed with MeCN (2 × 50 mL), MeOH (2 × 50 mL), and distilled water (3 × 100 mL). Then, it was dried at 60°C under vacuum (Figure ) …”
Section: Methodsmentioning
confidence: 99%
“…Then, it was dried at 60 C under vacuum ( Figure 1). 27,28 Color: light brown for polymer I, brown for both polymers II and III; yield: 88%, 91%, and 86% for polymers I-III. When the polymer was completely dissolved in the reaction mixture, 1% APS and 1 mL 1,4-butanediol of the total weight were added into the mixture as chain initiator and extender, respectively.…”
Section: Synthesis Of Polymersmentioning
confidence: 99%
“…An amount of 0.02 mol of 4-aminophenol, dissolved in methanol (5 ml), was poured into these mixtures and heated (60 • C, 6 h), slowly. These mixtures were filtered, distilled from acetonitrile and they were dried in a vacuum oven [30]. The yields of purely synthesized SB-9, SB-10 and SB-11 were found to be 73, 74 and 74%, respectively.…”
Section: Synthesis Procedures Of Schiff Bases and (Paz-e)smentioning
confidence: 99%
“…DMA tests were carried out by a Perkin Elmer Pyris Diamond DMA 115 V using a single cantilever bending mode at a frequency of 1 Hz, at a heating rate of 3 • C min −1 and in the range of 20−350 • C under a N 2 (100 ml min −1 ) atmosphere. The samples were prepared as follows: 0.2 g of (PAZ-E)s was placed into the titanium clamp (supplied from Triton Technology Ltd., United Kingdom) and extended, followed by closing of the clamps at both sides [30].…”
Section: Characterization Techniquesmentioning
confidence: 99%
“…Another important class of the high‐performance conjugated polymers is poly(azomethine)s (PAMs). These conjugated polymers have been attracted much interest because of their thermal stability, mechanical strength, optoelectronic, photovoltaic, paramagnatism, electrical conductivity, liquid crystalline, therapeutic, and ability to form complexes with metals, applications such as sensors and light emitting materials . Moreover, different derivatives of PAMs such as poly(azomethine‐urethane)s, poly(azomethine‐ether)s, poly(azomethine‐carbonate)s, and poly(azomethine‐sulfone)s were synthesized to improved solubility and processability of these polymer types.…”
Section: Introductionmentioning
confidence: 99%