131 resultados para 514 Topología


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A series of amorphous silicon carbide films were prepared by plasma enhanced chemical vapor deposition technique on (100) silicon wafers by using methane, silane, and hydrogen as reactive resources. A very thin (around 15 A) gold film was evaporated on the half area of the aSiC:H films to investigate the metal induced crystallization effect. Then the a-SiC:H films were annealed at 1100 degrees C for 1 hour in the nitrogen atmosphere. Fourier transform infrared spectroscopy (FTIR), X-Ray diffraction (XRD), and scanning electron microscopy (SEM) were employed to analyze the microstructure, composition and surface morphology of the films. The influences of the high temperature annealing on the microstructure of a-SiC:H film and the metal induced metallization were investigated.

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Modes in equilateral triangle resonator (ETR) are analyzed and classified according to the irreducible representations of the point group C-3v., Both the analytical method based on the far field emission and the numerical method by FDTD technique are used to calculate the quality factors (Q-factors) of the doubly degenerate states in ETR. Results obtained from the two methods are in reasonable agreement. Considering the different symmetry properties of the doubly degenerate eigenstates, we also discuss the ETR joined with an output waveguide at one of the vertices by FDTD technique and the Pade approximation. The variation of Q-factors versus width of output waveguide is analyzed. The numerical results show that doubly degenerate eigenstates of TM0.36 and TM0.38 whose wavelengths are around 1.5 mu m in the resonator with side-length of 5 mu m have the Q-factors larger than 1000 when the width of the output waveguide is smaller than 0.4 mu m. When the width of the output waveguide is set to 0.3 mu m, the symmetrical states that are more efficiently coupled to output waveguide have Q-factors about 8000, which are over 3 times larger than those of asymmetric state.

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X-ray photoelectron spectroscopy has been used to measure the valence band offset of the ZnO/BaTiO3 heterojunction grown by metal-organic chemical vapor deposition. The valence band offset (VBO) is determined to be 0.48 +/- 0.09 eV, and the conduction band offset (CBO) is deduced to be about 0.75 eV using the band gap of 3.1 eV for bulk BaTiO3. It indicates that a type-II band alignment forms at the interface, in which the valence and conduction bands of ZnO are concomitantly higher than those of BaTiO3. The accurate determination of VBO and CBO is important for use of semiconductor/ferroelectric heterojunction multifunctional devices.

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A high yielding rice variety mutant (Oryza sativa L., Zhenhui 249) with low chlorophyll b (Chl b) has been discovered in natural fields. It has a quality character controlled by a pair of recessive genes (nuclear gene). The partial loss of Chl b in content affects the efficiency of light harvest in a light harvest complex (LHC), thus producing the difference of the exciting energy transfer and the efficiency of photochemistry conversion between the mutant and wild-type rice in photosynthetic unit. The efficiency of utilizing light energy is higher in the mutant than that in the wildtype rice relatively. For further discussion of the above-mentioned difference and learning about the mechanism of the increase in the photochemical efficiency of the mutant, the pico-second resolution fluorescence spectrum measurement with delay-frame-scanning single photon counting technique is adopted. Thylakoid membranes of the mutant and the wild-type rice are excited by an Ar+ laser with a pulse width of 120 ps, repetition rate of 4 MHz and wavelength of 514 nm. Compared with the time and spectrum property of exciting fluorescence, conclusions of those ultrafast dynamic experiments are: 1) The speeds of the exciting energy transferred in photo-system I are faster than that in photo-system II in both samples. 2) The speeds of the exciting energy transfer of mutant sample are faster than those of the wildtype. This might be one of the major reasons why the efficiency of photosynthesis is higher in mutant than that in the wild-type rice.

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采用盆栽和人工控制土壤水分的方法,使用Li-6400便携式光合测定系统观测本氏针茅(Stipa bungeana)光合生理生态特征的日变化。结果表明:在不同土壤水分状况下,本氏针茅净光合速率日变化曲线均呈"双峰"型,并有不同程度的"午休"现象,且上午的净光合速率明显高于下午,随着土壤水分的升高而增加;蒸腾速率日变化曲线也呈"双峰"型,表现为较高土壤水分处理针茅具有较高的蒸腾速率;气孔导度受水分和光热胁迫的影响,日变化曲线呈凹型;胞间CO2浓度受空气CO2浓度和气孔导度的双重影响,呈现早晚高,正午低的日变化进程;水分利用效率最高值出现在上午较早的时段,随着土壤水分的增加,水分利用效率却降低。

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以22 a定位试验为基础,在黄土高原旱地研究了长期施用氮磷化肥,对不同种植体系土壤有效硫在剖面上分布与累积状况。结果表明,在60-80 cm土层各处理出现第一个累积峰,累积峰值为:玉米-小麦(2 a)+糜子轮作27.07 mg/kg,豌豆-小麦(2 a)+糜子轮作25.42 mg/kg,小麦(2 a)+糜子-玉米轮作24.23 mg/kg,豌豆-小麦(2 a)+玉米轮作22.61 mg/kg,小麦连作16.56 mg/kg,红豆草-小麦(2 a)轮作15.14 mg/kg;在120-180 cm土层又出现有效硫的第二个累积峰,累积峰值为:小麦(2 a)+糜子-玉米轮作34.20 mg/kg,豌豆-小麦(2 a)+糜子轮作32.16 mg/kg,豌豆-小麦(2 a)+玉米轮作31.00 mg/kg,红豆草-小麦(2 a)轮作30.32mg/kg,玉米-小麦(2 a)+糜子轮作29.16 mg/kg,小麦连作26.22 mg/kg。0-200 cm土层有效硫总累积量玉米-小麦+糜子轮作高达559.64 kg/hm2,其次是小麦+糜子-玉米轮作为538.88 kg/hm2,豌豆-小麦+糜子轮作为514.34 kg/...

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基于黄土坡面降雨—径流关系的复杂性且非线性特性,引用3层前馈型BP网络模型,对不同土地利用方式(草灌地、刈割地、翻耕地)径流量进行模拟,以植被盖度、降雨强度、坡度、土壤前期含水率和土壤容重5个因子作为输入层变量,次降雨下径流量作为输出层变量,并利用野外人工模拟降雨试验所得到不同降雨强度下各类土地利用径流小区的径流量实测资料,对网络进行模拟训练和预测,取得了较好的结果,平均误差不超过10%。研究结果表明,与传统回归统计方法进行了误差比较,该模型的预测精度更高。

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为了合成功能化聚哇琳(如质子传导聚喳琳或旋光性聚唆琳)和研究聚哇琳结构与性能之间的关系,合成了含毗咯基单元或含联蔡基单元的聚喳琳和聚葱琳,并对其性质进行了研究,主要内容如下:(1)建立了二乙酰吡咯的合成方法;合成并表征了四种二苯酞基一二氨基单体和五种新型的含毗咯基或联蔡基的二乙酞基单体;并对部分合成方法进行了改进,简化了实验步骤,提高了产率。(2)合成、表征了8种含吡咯基单元的聚喳琳和聚葱琳,这些新的聚合物具有较高的玻璃化转变温度(242-339℃)和出色的热稳定性(514-554℃)。与聚葱琳系列相比,聚哇琳具有较高的热稳定性,在普通溶剂中较好的溶解性和较低的最大吸收波长(λamax)。含有2,5-亚吡咯基的固态聚葱琳表现出少见的高人arnax(565nln)和低的带隙能量(2.02eV)。所有的聚合物在溶液中具有很低的光量子效率(0.01%一10-5%)。它们的激发态寿命为0.28-1.29ns。通过比较聚合物异构体的性质,探讨了分子结构,尤其亚吡咯基结构对聚合物电子结构、热力学和光学性质的影响,提出了聚合物主链上毗咯氢和喳琳氮间的氢键模型并对聚合物异构体性质差异给予解释。(3)考察了聚喳琳的电化学性质,结果表明这些聚合物存在1-3个不可逆氧化电位和1-2个不可逆还原电位,这是聚哇琳文献中未曾报道的现象。(4)以氯化锉作稳定剂,DMAc作溶剂,得到稳定的PBM高浓度溶液;以此溶液浇铸成膜,其热力学性能优良;经磷酸乙醇溶液浸渍掺杂的PBM膜,在157℃质子导电率达到1.5x*10-3Scm-1。(5)合成、表征了含联蔡基团的旋光性聚喳琳,这些新的聚合物具有较高的玻璃化转变温度(201-305℃)、出色的热稳定性(420-497℃)和耐溶剂性能。创门的结晶度较低,在浓硫酸中的旋光活性远大于联蔡单体,其旋光值与聚合物手性单元的过量比例成线性关系,但旋光方向却与单体不同。