171 research outputs found

    多色探针熔解曲线法在卡马西平不良反应相关基因检测中的临床评价

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    目的对多色探针熔解曲线法(multicolor melting curve analysis,MMCA)用于卡马西平不良反应相关的HLA-B*15:02基因检测进行临床评价。方法收集厦门市中心血站1 147份厦门地区无偿献血者的外周静脉血样本,经基因DNA提取后,按双盲对照试验,分别应用MMCA法和HLA-SBT测序法对各样本进行HLA-B*15:02基因检测,比较2种检测方法的符合率。对于检测结果不一致的标本,采用第三方Sanger测序和电泳验证,计算总符合率。结果采用MMCA法共检出77份HLA-B*15:02阳性标本,1 070份HLA-B*15:02阴性标本。采用HLA-SBT测序法共检出74份HLA-B*15:02阳性标本,1 070份HLA-B*15:02阴性标本,以及3份无明确的分型信息的标本(仅显示为B*15:VG-B*15:CYS型)。该3份标本经Sanger测序以及电泳验证,确认为HLA-B*15:02阳性标本。因此,MMCA法检测HLA-B*15:02基因的阳性检出率为100%(77/77),阴性检出率为100%(1 070/1 070),总符合率为100%(1 147/1 147)。此外,在1 147份临床标本中共检出77份阳性结果,HLA-B*15:02的携带率为6.7%(77/1147),这与文献报道的数据基本一致。结论 MMCA法用于HLA-B*15:02基因的检测,具有简便、快速、灵敏度高、特异性强等优点,可应用于卡马西平不良反应相关的HLA-B*15:02基因的临床辅助检测

    Measurement of temperature, velocity and water vapor concentration in a scramjet combustor based on nearinfrared diode laser absorption

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    A multi-channel Tunable Diode Laser Absorption Spectroscopy (TDLAS) system was designed and constructed for flow parameters diagnostics in a scramjet combustor. Two fiber coupled distributed feedback (DFB) lasers with narrow line width were used to probe two H2O absorption features (7185.597cm-1,7444.35cm-1+7444.37cm-1(c ombined)) by using direct absorption Time-Division-Multiplexing (TDM) strategy at a 4-kHz repetition rate. Laser light was split into five beams and transmitted across the test region. Two motorized precision translation stages were used to move the collimators during the test, so that the three beams located near the cavity and at the exit of the combustor can scan the cross sections respectively. Flow parameters could be obtained simultaneous which included average temperature, water vapor concentration and velocity at the entrance of the combustor, the distribution of temperature, water vapor concentration at a cross section near the cavity, the distribution of temperature, water vapor concentration and velocity at the exit cross section of the combustor. The parameters of the flow entering and exiting the combustor could be used to evaluate the performance of the direct-connected scramjet facility and the combustion efficiency of the combustor. The parameters at the cross section in the combustor could also be used to analysis combustion characteristics in the combustor

    一种浮动复合型人工鱼巢

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    一种浮动复合型人工鱼巢,包括浮动框架,在浮动框架的四周设有多个固定装置,并且浮动框架与固定装置之间是采用活动连接,在浮动框架上分布设有多根缆绳,在缆绳的端部固接有沉子,在沉子与浮动框架之间的缆绳上固定连接多个粘附基质,本实用新型提供一种能为产粘性卵鱼类提供产卵场所的浮动复合型人工鱼巢,能有效促进鱼类资源的保护和可持续利用。</p

    Performance of the fuel injector in supersonic combustor

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    Enhancing the fuel-air mixing is critical for scramjet combustor performance. The performance of four different aerodynamic ramp injectors was reported in this paper. The experiments were conducted in a direct-connected scramjet test facility. The concentration profiles were obtained by gas sampling and chromatogram analysis. The pictures of the flow field were obtained by using laser scatter. It would be used to analyze the flow field generated by the aerodynamic ramp, then optimize the layout of the injectors. The results would offer some useful information for engine design. Copyright © 2009 by the American Institute of Aeronautics and Astronautics, Inc

    Electric-field-induced selective catalysis of single-molecule reaction

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    随着单分子电学检测技术的迅速发展,分子电子学的研究不再局限于分子电子学器件的构筑及其电学性质的测量,而且扩展到单分子尺度化学反应过程的探索。然而目前相关的研究仍然局限于理论计算方面,在单分子尺度上实时监测和调控化学反应的活性和选择性是化学领域的长期目标和挑战。针对这一挑战,洪文晶教授课题组与程俊教授课题组合作,自主研发了精密科学仪器,将单个有机分子定向连接在两个末端尺寸为原子级的电极之间,解决了化学反应中分子取向控制的问题.理论计算结果证实了定向电场可以有效地稳定化学反应的过渡态,从而降低反应能垒。该研究工作在化学化工学院洪文晶教授、程俊教授、能源材料化学协同创新中心(iChEM)刘俊扬副研究员的共同指导下完成,由硕士研究生黄晓艳、iChEM博士研究生唐淳、博士研究生李洁琼以及兰州大学的陈力川博士作为共同第一作者,化学化工学院师佳副教授、陈招斌高级工程师、夏海平教授和田中群教授,萨本栋微纳研究院杨扬副教授、环境与生态学院白敏冬教授以及兰州大学张浩力教授参与了研究工作的讨论并给予指导,博士后乐家波、博士研究生郑珏婷、张佩(已毕业)、李瑞豪、李晓慧也参与了研究工作。Oriented external electric fields (OEEFs) offer a unique chance to tune catalytic selectivity by orienting the alignment of the electric field along the axis of the activated bond for a specific chemical reaction; however, they remain a key experimental challenge. Here, we experimentally and theoretically investigated the OEEF-induced selective catalysis in a two-step cascade reaction of the Diels-Alder addition followed by an aromatization process. Characterized by the mechanically controllable break junction (MCBJ) technique in the nanogap and confirmed by nuclear magnetic resonance (NMR) in bottles, OEEFs are found to selectively catalyze the aromatization reaction by one order of magnitude owing to the alignment of the electric field on the reaction axis. Meanwhile, the Diels-Alder reaction remained unchanged since its reaction axis is orthogonal to the electric fields. This orientation-selective catalytic effect of OEEFs reveals that chemical reactions can be selectively manipulated through the elegant alignment between the electric fields and the reaction axis.This work was supported by the National Key R&D Program of China (2017YFA0204902), the National Natural Science Foundation of China (21722305, 21703188, 21673195, 21621091, 51733004, 51525303, and 91745103), the China Postdoctoral Science Foundation (2017M622060), and the Young Thousand Talents Project of China. 该工作得到国家自然科学基金委(21722305、21703188、21673195、51733004、51525303、91745103),国家重点研发计划课题(2017YFA0204902),中国博士后面上基金(2017M622060)的资助,以及固体表面物理化学国家重点实验室、醇醚酯化工清洁生产国家工程实验室、能源材料化学协同创新中心的支持

    NMR studies on interactions between diperoxovanadate complexes and 1-methylimidazole

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    To understand the effects of organic ligands of the diperoxovanadate complexes on the reaction equilibrium, the interactions between a series of diperoxovanadate complexes [OV(O-2)(2)LL '](n-) [n=1 similar to 3; LL '=oxalate, abbr. oxa; picolinate, abbr. pic; 2,2 '-bipyridine, abbr. bipy; and 1,10-phenanthroline, abbr. phen. The corresponding peroxovanadate species abbreviate bpV(oxa), bpV(pic), bpV(bipy), and bpV(phen)] and I-methylimidazole (abbr. N-Me-Im) in solution were explored using multinuclear (H-1, C-13, and V-51) magnetic resonance, COSY, and variable temperature NMR in 0.15 mol/L NaCl ionic medium for mimicking the physiological conditions. The experimental results indicated the activity order of these four complexes with I-methylimidazole as follows: bpV(oxa)> bpV(pic)> bpV(bipy)> bpV(phen). Both the coordinating capability and the steric effect of the organic ligands affect the reaction equilibrium. At the same time, a new six-coordinated peroxovanadate species [OV(O-2)(2)(N-Me-Im)](-) is formed due to the competitive coordination

    Single-Molecule Plasmonic Optical Trapping

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    人们对于在常温常压条件下尤其是溶液环境中俘获或者操控微观粒子的追求从未停止,以期不断减少可操控的微观粒子的尺寸,最终实现单分子操控的目标。化学化工学院田中群教授和洪文晶教授团队合作,利用等离激元光学纳米间隙实现单分子的直接捕获与释放。该工作由化学化工学院田中群教授、洪文晶教授以及萨本栋微米纳米科学技术研究院杨扬副教授共同指导,由化学化工学院已毕业博士生战超提出思路并设计实验、与萨本栋微米纳米研究院已毕业硕士生王干共同完成主要实验工作,已毕业博士生易骏完成理论模拟工作。魏珺颖硕士、博士生李之豪、陈招斌高工和师佳副教授参与了部分研究和课题讨论。【Abstract】The volume of the object that can be manipulated in solution is continuously decreasing toward an ultimate goal of a single molecule. However, Brownian motions suppress the molecular trapping. To date, free-molecule trapping in solution has not been accomplished. Here, we develop a strategy to directly trap, investigate, and release single molecules (∼2 nm) in solution by using an adjustable plasmonic optical nanogap, which has been further applied for selective single-molecule trapping. Comprehensive experiments and theoretical simulations demonstrated that the trapping force originated from plasmonic nanomaterials. This technique opens an avenue to manipulate single molecules and other objects in the size range of primary interest for physics, chemistry, and life and material sciences without the limitations of strong bonding group, ultra-high vacuum, and ultra-low temperature, and makes possible controllable single-molecule manipulation and investigation as well as bottom-up construction of nanodevices and molecular machines.This work is financially supported by the National Natural Science Foundation of China (21533006, 21621091, 21673195, 21973079, and 21722305), and the National Key R&D Program (2017YFA0204902, 2015CB932300). 该工作得到国家自然科学基金、国家重点研发计划课题的资助,以及固体表面物理化学国家重点实验室、能源材料化学协同创新中心的支持

    人可溶性肿瘤坏死因子受体Ⅰ型基因在黑曲霉中的表达

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    Investigation for Effects of Jet Scale on Flame Stabilization in Scramjet Combustor

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    Jet scale affects the mixing and combustion of fuel and inflow. With the increase in the scale of scramjet combustors, the study of large-scale jets is particularly significant. The effects of jet scale on flame stability in scramjet combustors were studied by direct-connect combustion experiments. In this paper, the flame distribution characteristics of different jet scales were compared by using similar jet/inflow momentum ratios. The inflow Mach numbers were 2.4 and 3.0, and the total temperature was 1265 K and 1600 K, respectively. The results show that, when the equivalence ratio increases, the combustion intensity increases. Under the condition of same momentum ratio, the increase of jet scale is conducive to fuel injection into the core mainstream, increasing heat release, and the flame stabilization mode will change from cavity stabilization mode to jet-wake stabilization mode. Increasing the distance between jet orifices is not beneficial to combustion, and may even lead to blowoff
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