• Title/Summary/Keyword: ionene

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Preparation of Water-Resistant Humidity Sensor Using Photocurable Reactive Oligomers Containing Ionene Unit and Their Properties (이온넨 단위를 가지는 광경화성 반응성 올리고머를 이용한 내수성 습도센서의 제조 및 감습 특성)

  • Jeon, Young-Min;Gong, Myoung-Seon
    • Polymer(Korea)
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    • v.33 no.1
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    • pp.19-25
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    • 2009
  • New polyelectrolytes derived from ionene-containing photocurable reactive oligomer (PIDM) were prepared for water-resistant humidity-sensitive membranes. The mixture of PIDM, hexamethylene dimethacrylate (HDM), pentaerythritol triacrylate dimer (SP1013), and photoinitiator was simultaneously coated on the sensor electrode with photoinitiated radical polymerization. The pretreatment of the substrates with vinyl-type silane-coupling reagent was performed for improving the water durability and stability of the sensors at high temperature and humidity. When the resistance dependences on the relative humidity of the crosslinked PIDMs were measured, it was found that the resistance varied three orders of magnitude between 20 and 90%RH, which was required for the humidity sensor operating at ambient humidity. Their hysteresis, temperature dependence, response time, water durability, and high temperature/humidity stabilities were measured and evaluated as a humidity-sensing membrane.

Effect of Alkali Treatments on the Greenness and Volatile flavors of Sea Lettuce, Monostrima nitidum (알칼리처리가 파래의 녹색도 및 휘발성 향에 미치는 영향)

  • 이영근
    • Journal of Life Science
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    • v.11 no.6
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    • pp.568-573
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    • 2001
  • Sea lettuce(Monostrima nitidum) were treated with several alkali agents on condition with water blanching at 9$0^{\circ}C$ for 10 min., and followed by drying and powdering, thus, the power samples treated and the not treated were then allowed to be stored at $25^{\circ}C$, dark place for 5 months. The sea lettuce powder samples were evaluated for green color intensity and volatile flavor at a month intervals. The green intensity of the samples were measured by using Hunter-lab colorimeter, therefore, the decoloration of greenness were seen in both of the samples treated and the not treated, but there were slight inhibitory effects on decoloration in the treated with alkali agents, especially in the treated with KHCO$_3$.The volatile flavor of the samples were collected by simultaneous distillation-extraction, and then the 31 flavor compounds were separated on HP-5 capillary column(25m$\times$0.25mm i.d) and identified by using GC-MS. From these results, it was presumed that the characteristic impact flavor compounds were $\beta$-cyclocitral, $\beta$-cyclohomocitral, ionene, $\alpha$-ionone and $\beta$-ionone. The total content of the characteristic impact flavor compounds decreased in the samples treated with alkali agents more alkali agents more than in the not treated, but lee decrease was observed in the treated with KHCO$_3$.

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Formation of Volatile Compounds by the Thermal Degradation of ${\beta}-Carotene$ (${\beta}-Carotene$의 열분해(熱分解)에 의한 휘발성(揮發性) 화합물(化合物)의 생성(生成))

  • Park, Joon-Yung;Kim, Ok-Chan;Kim, Young-Hoi
    • Applied Biological Chemistry
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    • v.29 no.3
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    • pp.260-265
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    • 1986
  • Thermal degradation of ${\beta}-carotene$, major carotenoid present in cured tobacco leaves, were carried out at $400,\;600,\;and\;800^{\circ}C$ which are similar to temperatures existing in the combustion zones of cigarettes, and subsequent volatile degradation products were analyzed by combined gas chromatography-mass spectrometry. The volatile compounds identified from degradation products included 36 aromatic hydrocarbons, 10 ${\beta}-ionone-related$ compounds which have trimethylcyclohexane ring, and 7 others. Of these, 37 compounds including ${\beta}-cyclogeraniol$ had not been previously reported in the literature as thermal degradation products of ${\beta}-carotene$. The major compounds of degradation products at $400\;and\;600^{\circ}C$ were ${\beta}-xylene,\;{\alpha}-terpinene,\;{beta}-cyclocitral,\;ionene\;(1,2,3,4-tetrahydro-1,1,6-trimethyl\;naphthalene),\;{\beta}-ionone$, and dihydroactinidiolide. The major compounds at $800^{\circ}C$ were the above six compounds plus toluene.

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