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1.
A series of polyurethane microcapsules containing a phase change material (PCM) of n‐octadecane was successfully synthesized by an interfacial polymerization in aqueous styrene‐maleic anhydride (SMA) dispersion with diethylene triamine (DETA) as a chain extender reacting with toluene‐2,4‐diisocyanate (TDI). The average diameter of microPCMs is in the range of 5–10 μm under the stirring speed of 3000–4000 rpm. Optical and SEM morphologies of microPCMs had ensured that the shell was regularly fabricated with the influence of SMA. FTIR results confirmed that the shell material was polyurethane and the SMA chains associated on core material reacted with TDI forming a part of shell material. The shell thickness was decreasing in the range of 0.31–0.55 μm with the molar ratio of DETA/TDI from 0.84 to 1.35 and the weight of core material increasing from 40 to 80% (wt %). By controlling the weight ratio of PCM as 40, 50, 60, 70, and 80% in microPCMs, it was found using DSC that the Tm and Tc of microPCMs were in the range of 29.8–31.0oC and 21.1–22.0°C and an obvious phase change had been achieved nearly the same temperature range of that of PCM. The results from release curves of microPCM samples prepared by 1.4, 1.7, and 2.0 g of SMA indicated the release properties were affected by the amount of the dispersant, which attributed to the emulsion effect and shell polymerization structure. The above results suggest that the shell structure of microPCMs can be controlled and the properties of microPCMs determined by shell will perform proper practical usage. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 102: 4996–5006, 2006 相似文献
2.
不同分散染料微胶囊的制备及应用 总被引:7,自引:2,他引:7
采用原位聚合法进行双层造壁,对不同结构的分散染料进行胶囊化。将分散染料高速均化后,在pH=4~6时加入TMM,65℃保温1.5小时,再滴加一定量PEHMM,在75℃时保温2.5小时进行双层造壁、C.I.分散橙30染料胶囊的粒径平均值为13.53μm,中值8.732μm;C.I.分散蓝56微胶囊粒径平均值为36.3μm,中值24.87μm。胶囊染色结果显示:这两只染料性能优于传统染料,染色后其废液的吸光度分别为0.021和0.003,比传统染色废水的1.286和0.786低很多。 相似文献
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Paola Scarfato Elvira Avallone Pio Iannelli Vincenzo De Feo Domenico Acierno 《应用聚合物科学杂志》2007,105(6):3568-3577
In this paper we report on the preparation and characterization of polyurea‐based microencapsulated systems, containing essential oils as core materials, for potential applications in controlled‐release formulations of agrochemicals. Microcapsules were synthesized by interfacial polymerization in o/w emulsion between polyfunctional isocyanates and diamines, to investigate the effect of the monomer kind on the morphology and properties of the produced samples. The synthetic conditions that gave the best results were used to microencapsulate four essential oils, able to interfere with the seed germination and radicle elongation of some test plants. The produced samples were characterized, with the aim to analyze their morphology and to verify the effectiveness of essential oil microencapsulation. Moreover, preliminary bioassay based on seed germination and subsequent radical growth were carried out to study the effects of the microencapsulated essential oils. © 2007 Wiley Periodicals, Inc. J Appl Polym Sci 2007 相似文献
6.
Yue Zhi Junyi Che Haofang Zhu Rui Liu Yuanjin Zhao 《Advanced functional materials》2023,33(43):2304353
In diabetic wound healing, M1 macrophage accumulation and elevated inflammation are prevalent issues. Intelligent delivery systems that can sustainably release antioxidizing and anti-inflammatory ingredients are expected for effective wound healing. Herein, a novel glycyrrhetinic acid (GA) liposomes encapsulated microcapsules delivery system that has desired features for inflammatory wound repair is presented. As the bacteria could break down the alginate shells, the GA liposomes could be controllably released from the microcapsules, which promotes M2 macrophage polarization and regulate their responses in the inflammatory wound microenvironment. Based on these, it is demonstrated that the GA liposomes encapsulated microcapsules delivery system exhibits an anti-inflammatory and immunomodulatory effect for diabetic wound healing in a full-thickness defect model in diabetic rats. These results indicate that the immunomodulatory capabilities of the microcapsules can be unitized for efficient wound repair, and such a delivery system is valuable for clinical wound healing applications. 相似文献
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Triple Emulsion Drops with An Ultrathin Water Layer: High Encapsulation Efficiency and Enhanced Cargo Retention in Microcapsules 下载免费PDF全文
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微胶囊技术在阻燃材料中的应用进展 总被引:6,自引:0,他引:6
阐述了微胶囊技术的方法和原理,介绍了微胶囊阻燃材料的阻燃机理,综述了国内外有关研究现状,并对微胶囊阻燃材料的发展作了展望。 相似文献
10.
温度是影响双歧杆菌微胶囊稳定性的重要因素之一。本文采用了经典加速实验法和恒温储存实验法对双歧杆菌微胶囊的热稳定性进行考察,结果如下:受试双歧杆菌微胶囊经恒温37℃/RH60%-65%保存3个月(相当于常温下保存1年),双歧菌存活率高达59.4%,37℃下保存5个月12天后,其活菌存活率仍能保持在10%,25℃下可保存超过1年9个月,热稳定性明显优于未经包囊菌粉。 相似文献