237 resultados para 341.522


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探讨新型可降解材料聚己内酯(PCL)生物体内的降解性质。方法采用重量、分子量以及弯曲强度和弯曲模量、热力学性质等指标,观察植入兔背部肌肉中3、6、9、12周的聚己内酯材料的降解性能。结果材料在植入12周时,重量变化不明显,分子量下降不到15%,材料弯曲强度由植入前的(30.52±2.94)mPa变化为(31.96±1.33)mPa;弯曲模量由植入前的(242.32±16.06)mPa变化为(231.05±23.30)mPa;超微形态及热力学性质改变也比较缓慢。结论PCL降解速度慢,初始强度高、力学强度持续时间长,更适于作为骨折内固定物的生物材料。

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The complex, K2.5Na2NH4[Mo2O2S2(cit)(2)]. 5H(2)O (1), was obtained by crystallization from a solution of (NH4)(2)MoS4, potassium citrate (K(3)cit) and hydroxyl sodium in methanol and water under an atmosphere of pure nitrogen at ambient temperature. The crystals are triclinic, space group , a = 7.376 (3)Angstrom, b = 14.620 (2) Angstrom, c = 14.661 (1) Angstrom, alpha = 71.10 (1)degrees, beta = 81.77 (1)degrees, gamma = 78.27(2)degrees, R = 0.0584 for 2545 observed (I > 2 sigma (I)) reflections. Single crystal structure analysis reveals that citrate ligand coordinated to molybdenum atom through two carboxylato oxygens and one deprotonated hydroxyl oxygen together with two bridging sulfur atoms and a terminal oxygen atom completes distorted coordination octahedron around each molybdenum atom. Principal dimensions are: Mo = O-t, 1.707 Angstrom (av); Mo-S-b, 2.341 Angstrom (av); Mo-O-(hydroxyl), 2.021 Angstrom (av); Mo-O(alpha-carboxyl), 2.1290 Angstrom (av) and Mo-O(beta-carboxyl), 2.268(av) Angstrom. IR spectrum is in agreement with the structure.

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The thermal and chemical stabilities of Mo/Si multilayer structure used in Bragg-Fresnel optics were studied to get optimal technological parameters of pattern generation. Mo/Si multilayers were annealed at temperature ranging from 360 to 770 K, treated with acetone and 5 parts per thousand NaOH solution, and characterized by small-angle x-ray diffraction technique as well as x-ray photoelectron spectroscopy, and Olympus microscopy.

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The polycrystalline powder of para- and meta-dimethyl ester of pyromellitic acid (PMDE) have been prepared by fractional crystallization, and their crystal structures have been determined by Wide-Angle X-ray Diffraction (WAXD). Both p-PMDE and m-PMDE was found to be orthorhombic crystal system, and their unit cell parameters a = 0.840 nm, b = 0.707 nm, c = 1.136 nm and a = 1.032 nm; b = 0.835 nm, c = 0.714 nm, respectively. Space group all belongs to P-mmm. p-PMDE has two molecules per unit cell with crystal density 1.388 g . cm(-3), while m-PMDE has two molecules per unit cell with crystal density 1.522 g . cm(-3). Indices of crystal diffraction peaks are also detailed in the present work. The difference in crystal structures between p-PMDE and m-PMDE has thus been used to explain the curing behavior of isomerically pyromellitic dianhydride-based poly(amic ester)s.

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ESR和自旅捕捉技术用于研究活体动物犬心肌缺血再灌产生的自由基,PBN从冠状静脉血液中捕捉到了OH自由基,直接地证实了缺血再灌细胞膜损伤的活性氧自由基作用机制;实验还看到一种甾体皂甙药物具有保护心肌细胞.防止自由基损伤的功能.

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用透射电子显微镜(TEM)和傅里叶交换红外光谱(FTIR)等方法研究了结晶温度对聚偏氟乙烯(PVF2)晶相结构的影响.结果表明,从PVF2熔体高速淬火到较低温度等温结晶可直接生成β相结晶,临界淬火温度为30℃.淬火温度在40—70℃时,α和β相共存.当淬火温度较高时(80—150℃),生成α相结晶.在淬火温度高于165℃时,则得到PVF2的γ相结晶.在临界温度以下淬火的PVF2薄膜含有β相微晶,而高于临界淬火温度时则生成α相或γ相的片晶或球晶结构.

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本文研究了温度和压力对五种六氟二酐(6FDA)型聚酰亚胺膜对H_2、CO_2、O_2、N_2和CH_4五种气体透过性能的影响.在30-100℃区间,五种聚酰亚胺的透气系数与温度的关系均符合Arrhenius关系式;在0.3-1.2MPa区间,压力对透气系数的影响很小.6FDA-4,4'-二氨基二苯酮(DABP)和6FDA-3,3'-二甲基二苯甲烷二胺(DMMDA)在100℃仍然具有较大的透气选择系数,是比较好的气体分离膜材料.

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本文简要地总结了近期聚苯硫醚共混物的研究结果。着重讨论了聚苯硫醚共混物的物理性能和潜在的用途。

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用电子束加热沉积法(EBD)制备了厚度420um的ZnIn2ZTe4薄膜。研究了最佳成膜工艺条件和性能,用电子能谱(XPS)分析了ZuIn2Te4薄膜的组成、结构和状态;典型ZnIn2Te4膜最佳参数为:电阻率ρ为3.2×10-1Ω·cm,Hall迁移率是79cm2V-1s-1,载流子浓度是1.58×1017cm-3,禁带宽度(Eg)是2.33eV;探讨了ZuIn2Te4膜导电机理,制作了ZuIn2Te4-Si太阳能电池。

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测定了酸性水溶液中甘氨酸、丝氨酸和天冬氨酸稀土络合物(Ln=La、Pr、Nd、Eu、Tb、Dy、Ho、Er、Tm和Yb)的~(13)C诱导位移。对位移试剂的分析指出,三种氨基酸通过α-羧基以双齿形式配位于稀土,配位键长为0.23nm~0.25nm,天冬氨酸的y-羧基也是配位基团。由本文与文献中已报道的各种氨基酸稀土络合物的~(13)C诱导位移的系统分析表明,配体~(13)C超精细偶合常数A值和结构因子G值有如下规律:(1)│A(C_0)│<│A(C_α)│;A(C_0)为正,A(C_α)为负;(2)│G(C_0)│>│G(C_α)│;配体碳核的G均为负值。

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在镀铂的玻碳电极表面,修饰一层全氟代磺酸酯(Nafion)膜,制成基底电极。用化学交联法将半乳糖氧化酶(GAD)固定在基底电极表面,即制成半乳糖传感器。和光亮铂相比,镀铂电极对过氧化氢有更高的响应,而Nafion膜可以消除抗坏血酸,尿酸等电活性物质对测定的影响,提高了酶电极测定的选择性。D-半乳糖测定的线性范围为0.25~4.25 mmol/L,响应时间小于30s。电极连续使用300次,没有明显的电流变化。该电极具有快速、准确,选择性高的特点。

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结合膜的形态结构研究了以 LiCl为添加剂制得的疏水 PVDF膜的膜蒸馏性能。与来用水溶液高分子添加剂制得的PVDF微孔膜相比,膜蒸馏性能有了较大提高,尤其具有更高的截留率。制得的微孔膜的蒸馏通量已接近商品膜的膜蒸馏通量,表明以LiCl为添加剂制得的PVDF疏水微孔膜是一种适用于膜蒸馏的较理想的疏水微孔膜。

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介绍了p-n结电容测量方法。通过测量C-V特性研究了Cds太阳电池的热处理及上栅过程,分析并讨论了p-n结的变化与电池不稳定的关系。初步研究了扩散电位的测定问题。

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Sequence-related amplified polymorphism (SRAP) is a novel molecular marker technique designed to amplify open reading frames (ORFs). The SRAP analytic system was set up and applied to Porphyra germplasm identification in this study for the first time. Sixteen Porphyra lines were screened by SRAP technique with 30 primer combinations. In the analysis, 14 primer combinations produced stable and reproducible amplification patterns in three repetitive experiments. Among the total 533 amplified fragments, 522 (98%) were polymorphic, with an average of 38 fragments for each primer combination, ranging in size from 50 to 500 bp. The 533 fragments were visually scored one by one and then used to develop a dendrogram with Unweighted Pair-Group Method Arithmetic Average (UPGMA), and the 16 Porphyra lines were divided into two major groups at the 0.68 similarity level. From the total 533 fragments, I I amplified by two primer combinations, ME1/EM1 and ME4/EM6, were used to develop the DNA fingerprints of the 16 Porphyra lines. The DNA fingerprints were then converted into binary codes, with I and 0 representing presence and absence of the corresponding amplified fragment, respectively. In the DNA fingerprints, each of the 16 Porphyra lines has its unique binary code and can be easily distinguished from the others. This is the first report on the development of SRAP technique and its utilization in germplasm identification of seaweeds. The results demonstrated that SRAP is a simple, stable, polymorphic and reproducible molecular marker technique for the classification and identification of Porphyra lines. (c) 2007 Elsevier B.V. All rights reserved.

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类胡萝卜素在生物体内具有重要的生理功能,其中虾青素的抗氧化活性、提高动物的免疫能力,预防癌症等生理功能更为显著。类胡萝卜素的代谢工程在大肠杆菌、酵母和高等植物中已取得了较大的进展。本文对真核微藻类胡萝卜素代谢工程进行了初步的探索。 1.克隆雨生红球藻β-胡萝卜素羟化酶基因crtR-B,基因枪法转入衣藻叶绿体,经强光处理转化子,HPLC分析表明细胞的叶黄素库(V+A+Z)量较野生型增加,表明是外源的β-胡萝卜素羟化酶将β-胡萝卜素生成玉米黄素。 2.克隆雨生红球藻β-胡萝卜素酮化酶基因bkt,基因枪法转入衣藻叶绿体,RT-PCR及RT-PCR Southern blot分析表明外源基因具有转录活性,但未检测到转化子中积累虾青素。 3.根据盐生杜氏藻大量积累β-胡萝卜素的特点,对其遗传转化体系进行了研究。发现20 µg/ml草丁膦Basta,能够完全抑制1.0×106个/ml细胞生长;通过GUS报告基因在细胞内的瞬时表达,确立了轰击压力450 psi、距离6 cm为基因枪法转化盐生杜氏藻的最佳条件;将bar基因转入细胞,得到稳定的转化子,初步建立了盐生杜氏藻稳定遗传转化体系。克隆了盐生杜氏藻八氢番茄红素合成酶基因psy的cDNA序列、基因组序列及psy基因上游459 bp片段。 本文首次开展了衣藻类胡萝卜素代谢工程研究,发现在强光处理下,衣藻crtR-B转化子外源的羟化酶作用使叶黄素库量增加,实现了对衣藻类胡萝卜素代谢途径的修饰。确立了bar基因为选择标记、Basta为筛选试剂的基因枪转化盐生杜氏藻的遗传转化体系,并克隆了其内源的psy基因5’上游序列,为通过基因工程手段在盐生杜氏藻细胞内积累虾青素奠定了基础。