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791.
A new synthesis route based on polycondensation of phenol and formaldehyde cross-linked by graphene oxide (GO) was developed. Wet gel after gelation was converted into an organic xerogel by ambient pressure drying to obtain GO-cross-linked phenol–formaldehyde (PF) organic xerogels (GOCPFOX). Graphene-cross-linked PF carbon xerogels (GCPFCX) were produced by carbonization. The morphology and chemical structure of GOCPFOX and GCPFCX were analyzed. The electrochemical behavior of GCPFCX as an electrode material in electric double-layer capacitors (EDLCs) was investigated. Results show that the high mechanical strength of GO increased the gel skeleton strength; thus, organic xerogels exhibit very low drying shrinkage. Scanning electron micrographs indicated that addition of GO altered the gel structure. Thus, when GO was added into the PF solution, the PF molecular chains were anchored on the surface of GO by chemical and physical interaction. The GCPFCX-10 sample achieved the highest specific surface area, mesoporous volume, and specific capacity with 378 m2/g, 0.56 cm3/g, and 116 F/g, respectively. Hence, GCPFCX is a potential material for EDLCs owing to its low production cost and ability to avoid supercritical drying. 相似文献
792.
Dr. Zhao‐Yang Fei Bo Sun Liang Zhao Prof. Wei‐Jie Ji Prof. Chak‐Tong Au 《Chemistry (Weinheim an der Bergstrasse, Germany)》2013,19(20):6480-6487
Gold nanoparticles (3–4 nm) were deposited on Mn3O4 nanocrystallites with three distinct morphologies (cubic, hexagonal, and octahedral). The resulting structures were characterized, and their activities for benzene combustion were evaluated. The dominant exposed facets for the three kinds of Mn3O4 polyhedrons show the activity order: (103)≈(200)>(101). A similar activity order was derived for the interfaces between the Au and the Mn3O4 facet: Au/(200)≈Au/(103)>Au/(101). The metal–support interactions between the Au nanoclusters and specific facets of the Mn3O4 polyhedrons lead to a unique interfacial synergism in which the electronic modification of the Au nanoparticles and the morphology of the Mn3O4 substrate have a joint effect that is responsible for a significant enhancement in the catalytic activity of the Au/Mn3O4 system. 相似文献
793.
Jie Wang Shu‐Guang Chen Prof. Dr. Bing‐Feng Sun Prof. Guo‐Qiang Lin Prof. Yong‐Jia Shang 《Chemistry (Weinheim an der Bergstrasse, Germany)》2013,19(7):2539-2547
The concise collective total synthesis of englerin A and B, orientalol E and F, and oxyphyllol has been accomplished in 10–15 steps, with the total synthesis of orientalol E and oxyphyllol being achieved for the first time. The success obtained was enabled by the realization of the [4+3] cycloaddition reaction of 9 and 10 . Other features of the synthesis include 1) the intramolecular Heck reaction to access the azulene core, 2) the epoxidation–SN2′ reduction sequence to access the allylic alcohol, 3) the efficient regioselective and stereoselective formal hydration of the bridging C?C bond in the synthesis of englerins, and 4) the late‐stage chemo‐ and stereoselective C? H oxidation in the synthesis of orientalol E. The total synthesis of these natural products has enabled the structural revision of oxyphyllol and established the absolute stereochemical features of the organocatalytic [4+3] cycloaddition reaction. The identification of 5 as the natural product oxyphyllol, the success in converting 5 to orientalol E, along with the fact that englerins and oxyphyllol were isolated from plants of the same genus Phyllanthus gives support to our proposed biosynthetic pathways. This work may enable detailed biological evaluations of these natural products and their analogues and derivatives, especially of their potential in the fight against renal cell carcinoma (RCC). 相似文献
794.
Bing Zhang Yuchao Jiao Zhenzhen Kang Kaikai Ma Xuehong Ren Jie Liang 《Cellulose (London, England)》2013,20(6):3067-3077
A novel N-halamine precursor with tertiary amino group (5,5-dimethylhydantoinyl-3-ylethyl)-dimethylamine (DEADH), was synthesized and then covalently bonded onto cotton fabrics modified by 3-chloropropyltrimethoxysilane to form quaternarized N-halamine precursor grafted cotton fabrics which could be transferred to N-halamine structure upon exposure to dilute sodium hypochlorite solution. The grafted cotton fabrics were characterized by FT-IR, X-ray photoelectron spectroscopy, and field emission scanning electron microscope. The antimicrobial test showed that the cotton fabrics grafted with the quaternarized N-halamine were capable of 7-log inactivation of Staphylococcus aureus and Escherichia coli O157:H7 within 1 min of contact time. Very interestingly, it was found that the grafting process and following chlorination had almost no adverse effect on the tensile strength of cotton fabrics. Furthermore, the antimicrobial cotton fabrics exhibited good washing durability and stability. 相似文献
795.
796.
采用β-环糊精诱导十二烷基苯磺酸钠(SDBS)/聚丙烯酰胺(HPAM)复配体系,通过产生的激发光谱信号检测该复配体系中SDBS和HPAM的含量。考察了β-环糊精对SDBS与HPAM的诱导作用、SDBS与HPAM之间的干扰影响、溴水氧化HPAM时间、甲酸钠还原溴水时间等因素对二元复配体系定量的影响。结果表明,SDBS的最大诱导吸收波长为225 nm,溴水氧化HPAM的最佳时间为10 min,甲酸钠还原过量溴水的最佳时间为5~10 min。在水溶液体系中β-环糊精兼具显著提高复配体系中SDBS和HPAM的检测精度和定量抗干扰的作用,该方法的定量误差在2.0%以内。 相似文献
797.
在强碱性条件下,KMnO4氧化酪氨酸产生自由基,自由基氧化Luminol产生强化学发光,酪氨酸浓度与相对发光强度呈线性关系。选用C18反相色谱柱、CH3OH、KH2PO4混合液为流动相,酪氨酸能很好分离。基于此,建立CL-HPLC检测酪氨酸的新方法,线性范围为1.2×10-3~5.0×10-2g/L、线性相关系数为0.9994、RSD为2.37%、检测限为3.3×10-4g/L。方法已于检测实际样品氨基酸口服液,并与UV光度法,结果一致。本文探讨了酪氨酸增强KMnO4-Luminol化学发光机理。 相似文献
798.
799.
800.
水分子在纳米通道中的运动对于生命活动、纳米器件的设计等都有着重要的意义. 现在已经证实, 在(6,6)的碳纳米管中, 水分子会以单分子水链的形式协同通过碳纳米管. 但是如何控制水分子的流量仍然是一个困难的课题. 本文研究了在径向电场作用下, 碳纳米管中水分子通量的变化趋势和碳纳米管的开关行为.发现在碳纳米管两端存在200 MPa的压力差时, 电场强度从1 V·nm-1增加到3 V·nm-1, 水分子通量线性减小. 当径向电场强度增加到3 V·nm-1时, 碳纳米管处于关闭状态, 水分子无法通过碳纳米管. 进一步, 我们发现水偶极与碳纳米管管轴夹角的平均值的概率分布和翻转频率都与水分子在纳米管中的个数有很大关系. 相似文献