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61.
通过控制反应配比, 首次合成了三种具有不同加成数目的水溶性C60精氨酸衍生物, C60[HNC(NH)NH(CH2)3CH(NH2)COOH]nHn (n=2, 6, 8). 采用FT-IR, UV, RF, 1H NMR, 13C NMR, LC-MS, EA, 粒径分析, 透射电镜等手段对其结构进行了表征. 同时采用化学发光法考察了三种具有不同加成数目的C60精氨酸衍生物对活性氧自由基(超氧阴离子O2-.及羟自由基•OH)清除能力, 结果表明, C60精氨酸衍生物对活性氧自由基具有优良的清除能力, 且清除能力与加成基团供电效应、空间位阻及C60精氨酸衍生物在水中的聚集形态等因素密切相关. 相似文献
62.
药物释放环境对层状复合氢氧化物载体的影响 总被引:2,自引:0,他引:2
以层状复合氢氧化物(LDH)为载体用离子交换法制取乙酰苯甲酸(ASP)的插层复合物LDH-ASP, 通过体外释放实验和固相XRD、FT-IR、TEM、TG-DSC及BET-N2比表面积表征, 研究了药物释放环境对载体结构的影响. 结果表明释放环境pH为4.30-6.89时, 载体的层状特征减弱但晶体类型不变; pH为2.48-4.30时, H2PO-4对LDH的嫁接反应引起层状化合物向复杂磷酸盐转化; 随环境pH由6.89降低至2.48, 载体纯度下降, 晶态性征减弱,微孔吸附活性降低. 相似文献
63.
Prof. Dr. Qingxiang Wang Yingtao Ding Liheng Wang Jiancong Ni Zhanglong Yu Haibin Lin Feng Gao 《化学:亚洲杂志》2013,8(7):1455-1462
An electrically neutral cobalt complex, [Co(GA)2(phen)] (GA=glycollic acid, phen=1,10‐phenathroline), was synthesized and its interactions with double‐stranded DNA (dsDNA) were studied by using electrochemical methods on a glassy carbon electrode (GCE). We found that [Co(GA)2(phen)] could intercalate into the DNA duplex through the planar phen ligand with a high binding constant of 6.2(±0.2)×105 M ?1. Surface studies showed that the cobalt complex could electrochemically accumulate within the modified dsDNA layer, rather than within the single‐stranded DNA (ssDNA) layer. Based on this feature, the complex was applied as a redox‐active hybridization indicator to detect 18‐base oligonucleotides from the CaMV35S promoter gene. This biosensor presented a very low background signal during hybridization detection and could realize the detection over a wide kinetic range from 1.0×10?14 M to 1.0×10?8 M , with a low detection limit of 2.0 fM towards the target sequences. The hybridization selectivity experiments further revealed that the complementary sequence, the one‐base‐mismatched sequence, and the non‐complementary sequence could be well‐distinguished by the cobalt‐complex‐based biosensor. 相似文献
64.
以高岭石/二甲基亚砜为前驱体,利用置换法制备了高岭石/苯甲酰胺插层复合物。XRD和FTIR分析表明苯甲酰胺进入高岭石层间并与其形成新的氢键。采用TG、DSC研究了插层复合物的热分解行为。结果表明复合物在加热过程中发生两步分解,第一步是插层复合物的分解,即插层剂分子于231℃发生脱嵌,第二步为高岭石脱羟基的过程。针对第一阶段的脱嵌反应,采用等转化率法改进后的迭代法、Malek法以及Dollimore法等动力学方法计算得到了完整的动力学三因子:活化能Ea=75.4kJ.mol-1,指前因子A的范围为4.9×1010~8.8×1010s-1,动力学方程为:G(α)=[1-(1-α)1-n]/(1-n),f(α)=(1-α)n。 相似文献
65.
Osama Saber Hideyuki Tagaya 《Journal of inclusion phenomena and macrocyclic chemistry》2003,45(1-2):107-115
The layered double hydroxide (LDH) well known for its abilityto intercalate anionic compounds has been prepared conventionallyonly with bivalent and trivalent cations. In this study, Zn–Ti LDH consisting of bivalent and tetravalent cations was prepared, andreacted with organic monocarboxylic, dicarboxylic and aromatic acidsat high or room temperature. XRD patterns of the prepared LDH(Zn–Ti-CO3) showed that interlayer spacing of the LDH was 0.67 nm. The value was small compared to the usual LDH (Zn–Al–CO3)of 0.76 nm in the case of carbonate anion as the guest. Also, DTA,TG and DTG analysis indicated that the electrostatic force betweenthe layers and carbonate anions increased where the carbonate anionsin Zn–Ti LDH decomposed at 255 °C while those inZn–Al–CO3 decomposed at 230–240 °C. 相似文献
66.
超分子结构水杨酸根插层水滑石的组装及结构与性能研究 总被引:26,自引:0,他引:26
以锌铝水滑石ZnAl-CO3 LDHs为前体(主体),以乙二醇为分散介质,用离子 交换法组装了水杨酸根(客体)插层水滑石ZnAl-[o-HO(C6H4)COO]LDHs,并用XRD ,FT-IR,TG-DTA等手段对样品进行了表征。结果表明,能过控制离子交换条件, 水杨酸根阴离子可取代锌铝水滑石前体层间的CO3^2-离子,组装得到晶体结构良好 的水杨酸根插层水滑石。通过研究发现,主体水滑石层板与客体以静电力和氢键相 互作用,得到的超分子结构材料紫外阻隔作用增强并具有较好的稳定性,从而成为 一种集屏蔽和吸收双重功能的新型无机-有机得合紫外阻隔材料。 相似文献
67.
利用模板法在氧化铟锡(ITO)电极表面制备了三维有序多孔结构的金掺杂纳米Ti O2薄膜修饰电极(3DOM GTD/ITO),并在此修饰电极上成功固定小牛胸腺DNA(ct DNA),从而构建了一种新型的DNA生物传感器(DNA/3DOM GTD/ITO),并通过透射电镜(TEM)、扫描电镜(SEM)对修饰电极的表面形貌进行表征。采用电化学交流阻抗(EIS)法研究了ct DNA在3DOM GTD/ITO修饰电极表面的固定情况,结果表明,ct DNA已被成功地固定在3DOM GTD/ITO修饰电极表面。采用循环伏安法、微分脉冲伏安法等电化学方法研究了抗肿瘤药物槲皮素(Qu)在3DOM GTD/ITO修饰电极表面的电化学性质及与ct DNA的相互作用。结果表明,Qu在3DOM GTD/ITO修饰电极表面有1对准可逆的氧化还原峰,其氧化还原反应为2电子和2质子的转移过程。Qu可与固定在修饰电极上的ct DNA发生较强的结合作用,其结合常数(K)为3.61×106L/mol。循环伏安实验、紫外-可见吸收光谱、分子荧光光谱、圆二色性光谱均表明Qu与ct DNA之间的相互作用模式为嵌插作用。Qu与ct DNA的碱基结合具有序列选择性,对Qu与聚(d G-d C)及聚(d A-d T)的结合常数进行计算,得到结合常数比K(d G-d C)/K(d A-d T)=3.5,表明Qu与ct DNA发生嵌插作用时更倾向于结合在GC富集区域。 相似文献
68.
69.
Mild Synthesis of Pt/SnO2/Graphene Nanocomposites with Remarkably Enhanced Ethanol Electro‐oxidation Activity and Durability
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Dr. Yunteng Qu Dr. Yunzhi Gao Dr. Long Wang Dr. Jiancun Rao Dr. Geping Yin 《Chemistry (Weinheim an der Bergstrasse, Germany)》2016,22(1):193-198
We have designed a new Pt/SnO2/graphene nanomaterial by using L ‐arginine as a linker; this material shows the unique Pt‐around‐SnO2 structure. The Sn2+ cations reduce graphene oxide (GO), leading to the in situ formation of SnO2/graphene hybrids. L ‐Arginine is used as a linker and protector to induce the in situ growth of Pt nanoparticles (NPs) connected with SnO2 NPs and impede the agglomeration of Pt NPs. The obtained Pt/SnO2/graphene composites exhibit superior electrocatalytic activity and stability for the ethanol oxidation reaction as compared with the commercial Pt/C catalyst owing to the close‐connected structure between the Pt NPs and SnO2 NPs. This work should have a great impact on the rational design of future metal–metal oxide nanostructures with high catalytic activity and stability for fuel cell systems. 相似文献
70.
《应用有机金属化学》2017,31(12)
The amino acid arginine was used to modify the surface of graphene oxide nanosheets and then nickel‐substituted cobalt ferrite nanoparticles were supported on those arginine‐grafted graphene oxide nanosheets (Ni0.5Co0.5Fe2O4@Arg–GO). The prepared Ni0.5Co0.5Fe2O4@Arg–GO was characterized using flame atomic absorption spectroscopy, inductively coupled plasma optical emission spectrometry, energy‐dispersive spectroscopy, Fourier transform infrared spectroscopy, ultraviolet–visible spectroscopy, Raman spectroscopy, X‐ray diffraction, thermogravimetric analysis, scanning electron microscopy and transmission electron microscopy. The application of Ni0.5Co0.5Fe2O4@Arg–GO as a catalyst was examined in a one‐pot tandem oxidative cyclization of primary alcohols with o ‐phenylenediamine to benzimidazoles under aerobic oxidation conditions. The results showed that 2‐phenylbenzimidazole derivatives were successfully achieved using Ni0.5Co0.5Fe2O4@Arg–GO nanocomposite catalyst via the one‐pot tandem oxidative cyclization strategy. 相似文献