994 resultados para 146-892C


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Interfacial formation processes and reactions between Au and hydrogenated amorphous Si have been studied by photoemission spectroscopy and Auger electron spectroscopy. A three-dimensional growth of Au metal cluster occurs at initial formation of the Au/a-Si:H interface. When Au deposition exceeds a critical time, Au and Si begin interdiffusing and react to create an Au-Si alloy region. Annealing enhances interdiffusion and a Si-rich region exists on the topmost surface of Au films on a-Si:H.

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A design for an IO block array in a tile-based FPGA is presented.Corresponding with the characteristics of the FPGA, each IO cell is composed of a signal path, local routing pool and configurable input/output buffers.Shared programmable registers in the signal path can be configured for the function of JTAG, without specific boundary scan registers/latches, saving layout area.The local routing pool increases the flexibility of routing and the routability of the whole FPGA.An auxiliary power supply is adopted to increase the performance of the IO buffers at different configured IO standards.The organization of the IO block array is described in an architecture description file, from which the array layout can be accomplished through use of an automated layout assembly tool.This design strategy facilitates the design of FPGAs with different capacities or architectures in an FPGA family series.The bond-out schemes of the same FPGA chip in different packages are also considered.The layout is based on SMIC 0.13μm logic 1P8M salicide 1.2/2.5 V CMOS technology.Our performance is comparable with commercial SRAM-based FPGAs which use a similar process.

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由于Si/SiGe异质结构的带阶差主要发生在价带,为实现高效率的发光,本文从理论上设计了在硅基Si_(1-x) Ge_x虚衬底上外延应变补偿的Si/S_(1-y) Ge_y(y>x)量子阱的能带结构,将量子阱对电子的限制势垒提高到100meV以上.在实验上,采用300℃生长的Ge量子点插入层,制备出薄的SiGe驰豫缓冲层(虚衬底),表面Ge组份达到0.25,表面粗糙度小于2nm,驰豫度接近100%.在我们制备的SiGe缓冲层上外延了应变补偿SiGe/Si多量子阱结构,并初步研究了其发光特性.

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采用ICP刻蚀的方法,在SOI材料上制作出了中心波长为1.5509μm、信道间隔为200GHz的5×5阵列波导光栅(AWG).测试中心波长与设计值相差0.28nm,测试波长间隔与设计值相差在0.02nm之内,相邻信道串扰接近10dB,信道插入损耗均匀性为0.7dB,测试结果表明该器件能够初步达到分波功能.

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以回摆法衍射峰的积分强度为基础,提出了X射线衍射分析单晶体时的多重性因子和衍射几何因子的概念,推导出普遍适用的相含量计算公式。利用双晶X射线多功能四圆衍射仪测绘GaN/GaAs(001)外延层中立方相(002)面、{111}面和六角相{10-10}面的极图和倒易空间Mapping,分析了六角相和立方相微孪晶的各晶面在极图中的分布特征及计算相含量时的多重性因子和衍射几何因子,并根据立方相(002)、立方相微孪晶{111}、六角相{10-11}和{10-10}衍射峰的积分强度,求得外延层中立方相微孪晶和六角相的含量。

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The problem of frequency limitation arising in calibration of the test fixtures is investigated in this paper. It is found that at some frequencies periodically, the accuracy of the methods becomes very low, and. the denominators of the expressions of the required S-parameters approach zero. This conclusion can be drawn whether-the test fixtures, are symmetric or not. A good agreement between theory and experiment is obtained.

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The tunable ridge waveguide distributed Bragg reflector (DBR) lasers designed for wavelength-division-multiplex (WDM) communication systems at 1.55 um by using selective area growth (SAG) is reported. The threshold current of the DBR laser is 62mA and the output power is more than 8mW. The isolation resistance between the active region and the Bragg region is 30K Ohm. The total tuning range is 6.5nm and this DBR laser can provide 6 continuous standard WDM channels with 100GHz channel spacing; in the tuning range, the single mode suppression ratio (SMSR) is maintained more than 32dB and the maximum output power variation is less than 3dB.

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磷霉素(FOM)具有化学结构独特、适应症多、不易形成耐药性、可治疗危重感染等特点,其市场前景越来越被看好。但是,现在所采用的对称性化学合成工艺却存在着原材料浪费、环境污染和成本难以下降等问题。研究和开发磷霉素手性生物合成工艺可能是解决上述问题的一条可行途径。 在本论文之前的研究工作中,项目组筛选到了手性环氧化顺式丙烯磷酸(cPA)合成FOM的高效生物转化细菌-梭形芽孢杆菌(Bacillus fusiformis)FB7912,该菌株在cPA浓度为10mg/mL时的磷霉素产量为1.15mg/mL。本论文以FB7912为出发菌株,采用多种诱变方法对其进行诱变育种,并通过初筛和复筛获得了一株磷霉素产量显著增加的高效突变株,并对此突变株进行了相关特性研究。同时,本文还对几种不同诱变剂的诱变效应进行了评估。论文获得的主要研究结果如下: (1)采用了多种诱变方法-物理、化学及复合诱变对FB7912菌株进行诱变处理,如:紫外线、氯化锂、NTG、吖啶橙、(-)FOM耐受、NTG复合吖啶橙、NTG复合(-)FOM的诱变方法。结果表明,不同诱变因子对该菌株有着不同的致死效应和诱变效果。经过诱变,利用单菌落琼脂块法初筛共获得146株正突变株。其中,吖啶橙诱变处理筛选到了20株,NTG诱变处理筛选到了92株,(-)FOM耐受处理筛选到了25株,NTG复合吖啶橙诱变处理筛选到了6株,NTG复合(-)FOM诱变处理筛选到了3株,而紫外线和氯化锂诱变处理均未筛选到高效突变株。 (2)通过分析和比较不同诱变方法对FB7912的诱变效应,我们发现复合诱变的诱变效应要好于单一因素的诱变效应,化学诱变要好于物理诱变。以抗产物为最终目的的定向诱变的负突变率相对较低。从单因素化学诱变效应来看,NTG的诱变效应较强。以NTG复合吖啶橙的诱变结果为最佳,最后所得的正突变菌株即是从此诱变方法筛选得到。 (3)经过复筛,所选育到的菌株ZY39的最高磷霉素产量达到1.81mg/mL,比出发菌株提高了57.39%,而闫浩林等人报道的对另一株磷霉素转化菌株进行诱变仅使其产物产率提高33%。迄今已报道的最高产量的磷霉素转化菌株是一株Cellvibrio gilvus,当底物浓度为5 mg/mL时,其产物浓度达2.1 mg/mL。ZY39菌株的产物产量只比已报道的最高产量略低,但高于所有其它已报道菌株。 (4)对诱变所得菌株进行了磷霉素生物转化特性考察,发现与原始出发菌株相同,其顺丙烯磷酸的环氧化过程也具有严格的VO3-依赖性,Co2+和甘油对环氧化均有促进作用。

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本研究以长白山地区原始和次生的阔叶红松林为对象,在2007和2008年共建立了8种类型10块1 ha样地。通过野外调查和取样分析,得到各样地森林生态系统的植物、枯死物和土壤碳密度值,并结合采伐样地经营历史情况(采伐时间和强度),得到长白山地区原始阔叶红松林生态系统碳密度参考值和次生阔叶红松林生态系统碳密度对采伐强度和植被恢复时间的响应特征。在此基础上,通过建立阔叶红松林乔木碳密度与生态系统碳密度的回归关系,并结合露水河林业局3个时期(1987、1995和2003年)的小班数据和原始林碳密度参考值,估算露水河林业局林业用地3个时期和潜在的碳储量。主要研究结果如下: (1)原始阔叶红松林生态系统碳密度参考值:植被、枯死物、土壤和生态系统碳密度值分别为149.18±54.57、20.93±14.33、156.39±14.99、326.50±34.52 t•ha-1。其中下木层、乔木层碳密度分别是1.55±0.74,147.63±54.39 t•ha-1;粗木质残体和枯枝落叶碳密度分别是15.64±13.66、5.29±1.72 t•ha-1;0-50 cm的各层土壤碳密度分别为62.14±6.31、46.17±10.25、27.82±6.20、12.57±4.67、7.69±2.20 t•ha-1。 (2)原始阔叶红松林生态系统碳密度对采伐干扰的响应特征为:采伐干扰均会减少生态系统碳密度;其中植被碳库对采伐干扰最为敏感且碳密度值均减少,采伐强度直接决定植被碳密度的减少程度和恢复时间;枯死物碳库对采伐干扰最不敏感且碳密度值是先增加后减少,采伐强度和植被恢复时建群树种决定枯死物碳密度的变化程度;土壤碳库对高强度采伐干扰敏感,采伐强度决定土壤碳密度是否发生变化。 (3)估算露水河林业局林业用地在1987、1995、2003年和潜在的森林生态系统碳储量分别为29.58×106 t、27.55×106 t、30.46×106 t和38.75×106 t。

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锦鸡儿灌木适生于鄂尔多斯高原,资源丰富,萌发力强,粗蛋白和钙含量高,锦鸡儿的饲用化开发是当地羊绒业实现可持续发展的根本对策之一。为此进行了锦鸡儿资源评估并应用正交、均匀和配方设计对康氏木霉,黑曲霉产酶发酵和锦鸡儿同步酶解发酵进行了实验研究。结果表明:(1)锦鸡儿叶部约占地上干生物质的20%;4年是锦鸡儿生长的临界点,4年后粗纤维含量骤升,木质化程度加剧。故锦鸡儿应在花期后、落叶前的深秋、每4年贴地平茬一次。(2)开发出康氏木霉纤维素酶、黑曲霉果胶酶的优化产酶培养基配方与固态发酵工艺,二者放大发酵复合酶的活力超过国内同类商品,成本仅537.16元/(tDM)、1072.10元/(tDM)。舍饲时添加复合酶的山羊仅增重可增收138元(年·只)。(3)在同步酶解发酵锦鸡儿生物质时,乳酸菌长期发酵产生的乳酸会降低pH值并对酶解粗纤维产生抑制;复合酶中FPA:CMCase:棉花酶: β-glucosidase活力比以0.6:1:0.3:1为宜。(4)中间锦鸡儿资源集中在干草原区,4年轮流平茬时每年收获的生物质可供146万只羊越冬,经复合酶发酵后能满足191万只羊越冬期间对粗蛋白的需求。本研究有助于西部不发达牧区实现社会、经济和环境的可持续发展。