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Spectroscopic Sensing Characteristics of Novel Osmium Carbonyl Complexes to DNA and Other Polyanions
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作者 Gregory Ostner Cody Piotrowski +7 位作者 Xinyao Ren Yu Lei Mehrun Uddin Stacey Wong Karen Chen Lan Pham Elise Megehee Enju Wang 《American Journal of Analytical Chemistry》 2021年第7期277-293,共17页
In this research, the absorbance and luminescence response of two osmium(II) phenathrane (phen) carbonyl complexes to various DNA, heparin and i-carrageenan polyanions were studied. The [Os(phen)<sub>2</sub&g... In this research, the absorbance and luminescence response of two osmium(II) phenathrane (phen) carbonyl complexes to various DNA, heparin and i-carrageenan polyanions were studied. The [Os(phen)<sub>2</sub>CO(L)]<sup>2+</sup> complexes with L either a 4-phenyl pyridine (4-phpy) or phenyl imidazole (phimd) group exhibit moderate luminescent intensity in the visible region, their intensities are highly altered by the addition of DNA and other polyanion samples. These luminescent responses to polyanions were also compared with the [Ru(phen)<sub>3</sub>]<sup>2+</sup> complex. In ethanol solution, the presence of polyanions significantly enhanced the luminescent emission intensity of [Os(phen)<sub>2</sub>CO(L)]<sup>2+</sup> complexes with a blue shift. While the polyanions all showed emission enhancement on the highly lumi-nescent [Ru(phen)<sub>3</sub>]<sup>2+</sup> complex in ethanol solution with a red spectra shift. The [Os(phen)<sub>2</sub>CO(L)] <sup>2+</sup> with (phimd) ligand has the lowest emission in ethanol solution, its intensity can be enhanced up to 11 times in the presence of DNA polyanions. This enhancement for all the complexes in ethanol is mainly due to their electrostatic interaction with the anion sites and with some degree of ligand intercalation into the polyanion hydrophobic structure which reduced the solvent quenching of the complexes. The blue shift of the (4-phpy) and particularly (phimd) Os(II)CO complexes indicate an insertion of the (4-phpy) or (phimd) group into the polymer chains. The two new Os(II)CO complexes has great potential to be used as luminescence sensors for DNA and polyanion detection in the low micro molar range with high sensitivity. 展开更多
关键词 os(ii)co complex ABSORBANCE Luminescence Spectroscopy DNA and Polyanion Sensing
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μC/OS-Ⅱ对SoC验证支持技术的研究 被引量:1
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作者 闫效莺 《自动化技术与应用》 2010年第7期23-25,38,共4页
随着SoC设计规模的增大和设计复杂度的提高,对芯片设计深层次验证的必要性、工作量和难度也变得越来越大。在此背景下分析了SoC软硬件协同验证的原理及实现技术,研究了μC/OS-II在基于ARM7TDMI内核的SoC上的移植工作,提出了使用μC/OS-I... 随着SoC设计规模的增大和设计复杂度的提高,对芯片设计深层次验证的必要性、工作量和难度也变得越来越大。在此背景下分析了SoC软硬件协同验证的原理及实现技术,研究了μC/OS-II在基于ARM7TDMI内核的SoC上的移植工作,提出了使用μC/OS-II及其上层应用程序验证SoC芯片硬件可用性和可操作性的方法。 展开更多
关键词 片上系统 协同验证 μC/osii 多任务调度
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基于FPGA的ARM SoC原型验证平台设计 被引量:4
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作者 王丹 代雪峰 《微处理机》 2015年第6期15-18,21,共5页
随着应用需求的不断提升,SoC设计规模急剧增大,功能日益复杂,性能要求也越来越高,如何缩短验证时间,提高验证效率和质量以缩短芯片的生产时间成为当今SoC设计领域中最为关注的课题之一。FPGA原型验证是SoC设计的有效途径。在流片前建立... 随着应用需求的不断提升,SoC设计规模急剧增大,功能日益复杂,性能要求也越来越高,如何缩短验证时间,提高验证效率和质量以缩短芯片的生产时间成为当今SoC设计领域中最为关注的课题之一。FPGA原型验证是SoC设计的有效途径。在流片前建立一个基于FPGA的高性价比原型验证系统成为SoC验证的重要方法,可以及时发现芯片设计中的缺陷和错误,同时进行软件程序设计,进而缩短SoC芯片的开发周期。描述了以ARM为核心处理器的SoC设计的FPGA原型验证平台实现过程,介绍了怎样利用该平台进行软硬件协同验证,并在此基础上移植了uC/OSII嵌入式操作系统,对该SoC设计进行系统级验证。 展开更多
关键词 ARM处理器 SOC设计 FPGA原型验证 软硬件协同验证 UC/os-ii操作系统
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