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近年来,金属-有机骨架材料(MOFs)因为具有优异的骨架结构、丰富的孔隙度和多功能性,吸引了众多研究者的注意,各种各样的MOFs材料和MOF基复合材料被研制。但是由于MOFs大多以晶体和粉末的形式存在,其本身的刚性和易碎性限制了它的实际应用,同时MOFs在溶液中的不稳定性会导致材料的分解,一些高结晶度的MOFs还十分脆弱易碎且不易加工,因此有研究者将MOFs与水凝胶相结合,开发出许多具有优异性能的MOF基水凝胶材料。本文综述了MOF基水凝胶材料近年的研究进展,重点介绍了MOF基水凝胶的种类及其与其他材料的协同作用,讨论了MOF基水凝胶在传感、催化、水处理、伤口敷料和药物载体等方面的优势。MOF基水凝胶具有的可加工性、稳定性、易处理性为MOFs在实际应用中的研究具有指导意义。我们概述了纯MOF水凝胶、MOF@生物有机大分子水凝胶、MOF@生物相容性水凝胶,其他MOF基复合水凝胶的最新进展以及这些复合材料的应用。 相似文献
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羧甲基壳聚糖水凝胶制备及其在药物控释中的应用 总被引:26,自引:0,他引:26
以戊二醛为交联剂制备了一系列羧甲基壳聚糖pH敏感水凝胶 .研究了合成条件对羧甲基壳聚糖水凝胶溶胀性能的影响 .实验结果表明羧甲基壳聚糖的脱乙酰度、交联剂用量对水凝胶溶胀率的影响较大 .pH=3 0时 ,水凝胶收缩 ,而pH =1 0 ,5 0 ,7 4 ,9 0时 ,水凝胶溶胀 ,且在碱性条件下水凝胶的溶胀率远大于酸性条件下的溶胀率 .包埋在此水凝胶中的水杨酸释放随载药介质的pH值和水凝胶半径大小的变化而显著不同 ,pH =1 0条件下载药的水凝胶的释药率大于pH =7 4 ,12 0条件下的释药率 ,且水凝胶的半径越大 ,释药速度和释药率也越大 相似文献
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木质素-聚氨酯水凝胶的合成及其性能 总被引:3,自引:0,他引:3
异氰酸根封端的聚氨酯离子聚合物与乙酸木质素交联合成了一种水凝胶。研究了该水凝胶的吸水溶胀率、热稳定性能及以此凝胶包裹的硫酸铵的缓释性能。结果表明:当木质素与聚氨酯离子聚合物的质量比为0.35时,水凝胶在pH=6.86的缓冲溶液中的最大溶胀率为3.14;聚氨酯水凝胶中引入木质素,可以提高凝胶的热稳定性;木质素-聚氨酯水凝胶包裹的硫酸铵表现出明显的缓释特征。 相似文献
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以N-异丙基丙烯酰胺(NIPA)、N,N-亚甲基双丙烯酰胺(MBA)和聚乙二醇(PEG)为原料,以60Co-γ射线为放射源制备了快速响应聚N-异丙基丙烯酰胺(PNIPA)多孔水凝胶。用红外光谱分析了水凝胶的结构,并测定了水凝胶的溶胀动力学、退溶胀动力学和平衡溶胀率。结果表明,PEG分子仅在聚合交联过程中充当成孔剂,不参与反应,反应后可被除去;水凝胶具有明显的温度敏感性,成孔剂的添加提高了水凝胶的溶胀性能和LCST。选用阿司匹林为模型药物,对水凝胶的药物缓释性能进行了初步研究。 相似文献
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以蔗渣木聚糖磷酸酯和壳聚糖为主要原料,三聚磷酸钠为离子交联剂,制备了蔗渣木聚糖磷酸酯-壳聚糖水凝胶,并用SEM、IR表征了其结构。考察了影响制备及水凝胶粒子应用的因素,探讨了诸因素对水凝胶性能的影响。通过正交试验,分别得出两种方法制备水凝胶的优化条件:在pH=1.7的缓冲溶液中,蔗渣木聚糖磷酸酯浓度为0.10g/mL,壳聚糖浓度为0.04g/mL,三聚磷酸钠的浓度为0.20g/mL,成膜时间120min,用直接造粒法;在pH=6.8的缓冲溶液中,蔗渣木聚糖磷酸酯浓度为0.10g/mL,壳聚糖浓度为0.04g/mL,三聚磷酸钠浓度为0.20g/mL,成膜时间为90min,用间接造粒法。在优化制备条件下,通过模拟十二指肠缓冲溶液,得出在pH 4.8、三聚磷酸钠浓度为0.20mol/L时,水凝胶的载药量和药物释放行为较佳。 相似文献
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以二烯丙基胺和1-溴代十六烷为原料合成了疏水单体N,N-二烯丙基正十六烷胺(DiAC16),用FTIR、1H NMR和元素分析对其进行了表征。以2-羟基甲基丙烯酸乙酯(HEMA)、丙烯酸(AA)和N,N-二烯丙基正十六烷胺为共聚单体,N,N'-亚甲基双丙烯酰胺(BIS)为交联剂,十二烷基硫酸钠(SDS)为表面活性剂,过硫酸铵-四甲基乙二胺(TMEDA)为引发体系,制得的疏水改性智能水凝胶P(HEMA-NaAA-DiAC16)具有pH敏感特性。研究了DiAC16、NaAA、BIS用量及pH值和离子强度等因素对水凝胶P(HEMA-NaAA-DiAC16)溶胀性能的影响。结果表明,凝胶在水中的平衡溶胀率(为78.9~163.91),随DiAC16、BIS用量的增加和NaAA用量的减少而减少,n值(一般在0.5~1.0之间)随DiAC16、NaAA和BIS用量的增加而增加,为非Fickian扩散。水凝胶的吸水溶胀是放热过程,ΔH m在-2.09~-3.64 kJ/mol,ΔH m的绝对值随DiAC16用量的减少、NaAA用量和BIS用量的增加而增大,聚合物与水的亲和力逐渐增强。随离子强度的增强,平衡溶胀率下降。 相似文献
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超低密度气凝胶是一类具有超轻质特性的多孔固体材料,较常规气凝胶具有更高的孔隙率与更为多样化的表面特性,其独特的物理与化学性质使其作为新型纳米多孔材料在诸多新兴领域得到了重要应用。在制备过程中保留超低密度气凝胶高度发达的三维孔隙结构,以及在实际应用中发挥超低密度气凝胶独特的功能特性是气凝胶领域近年来的研究重点之一。本文按照超低密度气凝胶的主要类型综述了该材料制备技术的最新研究进展,探讨了其在空间探测、阻燃隔热、储能、吸附、催化以及传感领域的应用方式;通过分析目前研究中存在的主要问题,对未来的发展方向,如突破常压干燥制备技术、开展各类复合气凝胶或结构有序可控的超低密度气凝胶的制备、系统性地研究超轻质特性对气凝胶特定功能的影响规律等进行了展望。 相似文献
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Huwei Xing Yongsheng Fei Jingru Cheng Congcong Wang Jingjing Zhang Chenxi Niu Qian Fu Jiali Cheng Lingbin Lu 《Molecules (Basel, Switzerland)》2022,27(19)
In this study, a green, highly efficient and low energy consumption preparation method of cellulose nanofiber (CNF) was developed by using agricultural and forestry waste durian rinds as raw materials. The power of ultrasonic treatment was successfully reduced to only 360 W with low molecular weight liquid DMSO. The obtained durian rind-based CNF had a diameter of 8–20 nm and a length of several micrometers. It had good dispersion and stability in water, and could spontaneously cross-link to form hydrogel at room temperature when the concentration was more than 0.5%. The microscopic morphology and compressive properties of CNF aerogels and composite cellulose aerogels prepared from durian rind-based CNF were evaluated. It was found that CNF could effectively prevent the volume shrinkage of aerogel, and the concentration of CNF had a significant effect on the microstructure and mechanical properties of aerogel. The CNF aerogel with 1% CNF exhibited a sheet structure braced by fibers, which had the strongest compression performance. The porosity of CNF aerogels was high to 99%. The compressive strength of the composite cellulose aerogel with durian rind-based CNF was effectively enhanced. 相似文献
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To improve the utilization of fertilizer and water resources at the same time, a new slow-release PK compound fertilizer (SRCF) with the function of water retention was prepared. Element analysis results showed that the product contained 20.46% potassium (shown by K2O) and 15.45% phosphorus (shown by P2O5), which were trapped in the matrix of carboxymethylcellulose-graft-poly(acrylic acid-co-itaconic acid) superabsorbent polymer. Major factors affecting the water absorbency of SRCF such as weight ratio of itaconic acid (IA) to acrylic acid (AA), contents of crosslinker, K2HPO4, and carboxymethylcellulose (CMC) were investigated and optimized. The water absorbency of the product was 130 times its own weight if it was allowed to swell in tap water at room temperature for 1 h. Fourier transform infrared spectroscopy (FTIR) and Thermogravimetric/Differential thermal analysis (TG/DTA) confirmed that AA and IA monomers were graft-copolymerized onto CMC backbone and presented the improved thermal stability. The water evaporation of the fertilizer-containing superabsorbents, as well as their nutrients release in sandy soil was carried out, and a possible slow-release mechanism was proposed. Additionally, compressive modulus measurements revealed that the introduction of CMC could improve the mechanical properties of the superabsorbents. These studies showed that the product with good slow-release and water retention properties, being economical and environment-friendly, could be expected to have wide potential applications in modern agriculture and horticulture. 相似文献
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以硝酸铜、 正硅酸乙酯和硝酸铈为原料, 利用溶胶-凝胶-超临界流体干燥技术制备了不同n(Cu)/n(Si)的用于CO催化氧化的Cu/SiO2系列气凝胶催化剂. 利用TEM、 XRD、 物理吸附、 微型反应器和气相色谱等对试样进行了表征. TEM观察结果显示, 试样中含有介孔的气凝胶结构, 5 nm左右的Cu粒子均匀地分布在SiO2的网络组织中. BET分析结果表明, 试样的比表面积均在140 m2/g以上. XRD分析结果显示, 添加铈前后, 试样的物相发生了从Cu 2+ →Cu+ →Cu的转变, 使试样的催化活性进一步提高. 试样的催化氧化CO活性表明, 组分中铜含量的不同及铜的不同物种直接影响试样的催化氧化CO的活性, 当组分中n(Cu)/n(Si)=2时, Cu/SiO2试样上CO完全氧化的温度降为210 ℃; 于400 ℃低温焙烧, 可使试样中有效活性组分全部转变成纳米晶CuO, 并进一步降低了CO完全转变成CO2的温度; 添加少量铈组分, 使试样催化氧化CO的tstart, t50及t90温度提前20 ℃以上, Cu/SiO2试样催化氧化CO动力学研究结果显示, 试样降低CO氧化温度的实质是降低了CO氧化的反应活化能. 相似文献
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以天然鳞片石墨为原料,采用改良的Hummers方法,制备了高纯度的薄层或单层氧化石墨(GO);并以抗坏血酸为还原剂,通过自组装还原的方式成功制备了具有三维多孔独巨石结构的还原氧化石墨烯(rGO)气凝胶,其形貌和结构经FT-IR, SEM, TEM, XRD和XPS表征。并对其作为锂离子电池负极材料的电化学性能进行了测试。结果表明:rGO气凝胶独特的形貌和结构提高了其比容量和循环性能,在100 mA·g-1电流密度下首周放电比容量可达1 700 mAh·g-1,首周充电比容量达710 mAh·g-1,经过100周循环后放电比容量仍可保持在450 mAh·g-1,库伦效率保持在98%。 相似文献
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基于普通酚醛树脂有机气凝胶的高效制备与研究 总被引:2,自引:0,他引:2
基于普通线性酚醛树脂体系,采用溶胶-凝胶(sol-gel)法制备了酚醛树脂有机气凝胶.通过调节交联剂——六亚甲基四胺(HMTA)的浓度对酚醛树脂有机气凝胶的微观孔结构进行优化,减小溶剂在干燥过程中的毛细作用力,采用常压干燥的手段即可得到较小收缩率、较强骨架强度的有机气凝胶.详细研究了交联剂(HMTA)用量对有机气凝胶内部微观孔结构/形貌、表观密度、热稳定性、力学性能等方面的影响.孔结构与微观形态研究结果表明,随着HMTA浓度的减小,有机气凝胶平均孔径减小,比表面积增加,在较低交联剂浓度下,平均孔径达到100 nm,并且孔径分布均匀,内部聚合物有机骨架完好.纳米尺度的孔径和均匀的孔径分布能够显著提高有机气凝胶的骨架稳定性,与微米尺度孔径的气凝胶材料相比,压缩模量和压缩强度均有显著的提高.HMTA浓度的提高使酚醛树脂气凝胶体系中引入大量不稳定的N—CH2基团,造成气凝胶材料的热稳定性下降. 相似文献
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Anovel nanocomposite adsorbent, Silica aerogel activated carbon (SA‐AC) has been prepared for the purpose of removing lead ions from aqueous solution in batch process. The nanocomposite was characterized by Fourier transform infrared spectra (FTIR) and scanning electron microscope (SEM). In the present investigation, Pb(II) adsorption experiments on nanocomposite were conducted on aqueous solution at different initial Pb(II) concentration, pH of the solution, adsorption temperature, adsorbent dosage and contact time. Optimum pH for the adsorption was found to be 6 with corresponding adsorbent dosage level of 0.5 g and 60 °C temperature. The equilibriumwas achieved within 30 min of contact time. It is remarkable that using the developed nanocomposite absorbent, more than 90% of Pb(II) can be removed under desirable experimental conditions. The efficiency of the ions adsorption was determined using atomic absorption spectroscopy. Langmuir and Freundlich isotherm models were applied to analyze the experimental data. The best interpretation for the experimental data was given by the Freundlich isotherm equation. Desorption experiments by elution of the adsorbent with nitric acid show that the nanocomposite could be reused without significant losses of its initial properties. 相似文献
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Preparation of Silica Aerogel/Resin Composites and Their Application in Dental Restorative Materials
Jingru Cheng Yuyi Deng Yujin Tan Jiawei Li Yongsheng Fei Congcong Wang Jingjing Zhang Chenxi Niu Qian Fu Lingbin Lu 《Molecules (Basel, Switzerland)》2022,27(14)
As the most advanced aerogel material, silica aerogel has had transformative industrial impacts. However, the use of silica aerogel is currently limited to the field of thermal insulation materials, so it is urgent to expand its application into other fields. In this work, silica aerogel/resin composites were successfully prepared by combining silica aerogel with a resin matrix for dental restoration. The applications of this material in the field of dental restoration, as well as its performance, are discussed in depth. It was demonstrated that, when the ratio of the resin matrix Bis-GMA to TEGDMA was 1:1, and the content of silica aerogel with 50 μm particle size was 12.5%, the composite achieved excellent mechanical properties. The flexural strength of the silica aerogel/resin composite reached 62.9546 MPa, which was more than five times that of the pure resin. Due to the presence of the silica aerogel, the composite also demonstrated outstanding antibacterial capabilities, meeting the demand for antimicrobial properties in dental materials. This work successfully investigated the prospect of using commercially available silica aerogels in dental restorative materials; we provide an easy method for using silica aerogels as dental restorative materials, as well as a reference for their application in the field of biomedical materials. 相似文献
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采用溶胶-凝胶、 超临界干燥及高温裂解技术制备了不同石墨烯掺杂量的碳气凝胶(G-CA)粉体材料, 通过控制材料的组成和微观结构, 制备了密度仅为0.0093 g/cm3的低密度高导电性气凝胶粉体. 将G-CA粉体布撒在空气中, 测试其对毫米波、 可见光和红外光的衰减性能. 结果表明, 相对于纯碳气凝胶和纯石墨烯气凝胶, G-CA粉体对3种波段的电磁波的衰减性能大幅度提高. 其中石墨烯/掺杂量为7%的碳气凝胶(7%G-CA)在布撒初期和布撒20 min后, 对红外光和可见光均具有97%和94%以上的遮蔽率; 对于毫米波, 在布撒初期和布撒10 min以后, 分别具有75%和65%以上的遮蔽率. G-CA粉体具有良好的分等级微纳米结构及高导电性和超低密度, 该微观结构与组成的协同作用使其呈现出优异的多波段、 长时有效的电磁干扰性能, 有望扩展和延伸传统烟幕材料的应用范围. 相似文献
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采用水热法快速合成了一种新型介孔氧化硅-石墨烯气凝胶复合吸附材料(MSGA)。通过X射线衍射、扫描电镜等方法对MSGA进行表征。结果表明,经过水热反应和冻干处理后的MSGA材料的介孔结构保持完好,介孔氧化硅在MSGA中的分散具有高度均一性。当介孔氧化硅的含量达到88.2(wt)%时,MSGA的比表面积可达395.5m~2/g。MSGA材料对苯蒸汽的常温常压吸附量为10.77mL/g,是石墨烯气凝胶的13倍,吸附穿透时间达到石墨烯气凝胶的34.4倍。在0.8%的环境湿度下,由于材料表面羟基的亲和性,进一步提升了对苯的吸附。得益于超低密度和丰富的内部孔隙结构,MSGA能够适应高达500mL/min的气流量。上述结果表明,该复合材料在VOCs消除领域具有广阔的应用前景。 相似文献