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A novel NMR instrument for the in-situ monitoring of the absolute polarization of laser-polarized 129Xe 被引量:1
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作者 Aktham Asfour 《Journal of Biomedical Science and Engineering》 2010年第11期1099-1107,共9页
A new fully digital and home-built NMR (Nuclear Magnetic Resonance) spectrometer working at very-low magnetic field (4.5 mT) is presented. This spectrometer was initially dedicated for the in situ measurement of the a... A new fully digital and home-built NMR (Nuclear Magnetic Resonance) spectrometer working at very-low magnetic field (4.5 mT) is presented. This spectrometer was initially dedicated for the in situ measurement of the absolute polarization of hyperpolarized 129Xe. It allows detection and acquisition of NMR signals of proton (1H) at 190 kHz and of hyperpolarized xenon-129 (HP 129Xe) at 50 kHz. In this new NMR instrument, we replaced as much analog electronics as possible by digital electronic and software. Except for the power amplifier and the preamplifier, the whole system is digital. The transmitter is based on the use of a Direct Digital Synthesizer (DDS) board. The receiving board allows direct digitalization of the NMR signals thanks to an 8-bits analog-to-digital converter (ADC) clocked at 100 MHz. Decimation is preformed to dramatically improve the ADC resolution so as the final achieved effective resolution could be as high as 14-bits at 5 MHz sampling frequency. NMR signals are then digitally downconverted (DDC). Low-pass decimation filtering is applied on the base-band signals (I/Q) to enhance much more the dynamic range. The system requires little hardware. The transmitter and the receiver are controlled using Labview environment. It is a versatile, flexible and easy-to-replicate system. This was actually one of underlying ideas behind this development. Both 1H and hyperpolarized 129Xe NMR signals were successfully acquired. The system is used for the measurement of the absolute polarization of hyperpolarized 129Xe in hyperpolarizing experiments for the brain perfusion measurements. The high degree of flexibility of this new design allows its use for a large palette of other potential applications. 展开更多
关键词 nmr Very-Low Field Digital System 1h hyperpolarized 129Xe ABSOLUTE POLARIZATION BRAin PERFUSION measurements
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利用核磁共振技术研究聚苯胺纳米棒的成核机理
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作者 高莹丽 王瑞娟 +1 位作者 刘空 武晓东 《广州化工》 CAS 2015年第17期1-3,21,共4页
利用核磁共振技术原位追踪了在酸性条件下以Na VO3为氧化剂氧化苯胺制备聚苯胺纳米棒的形成过程。通过分析反应中各主要物种共振吸收峰的信号演变规律及彼此在时域上的关联性,得出聚苯胺纳米棒的成核过程经历了两个主要阶段:诱导期和晶... 利用核磁共振技术原位追踪了在酸性条件下以Na VO3为氧化剂氧化苯胺制备聚苯胺纳米棒的形成过程。通过分析反应中各主要物种共振吸收峰的信号演变规律及彼此在时域上的关联性,得出聚苯胺纳米棒的成核过程经历了两个主要阶段:诱导期和晶种聚集期。相较其它一维纳米材料(纳米纤维和纳米管),聚苯胺纳米棒的成核过程具有如下特点:1非常长的诱导期;2由单体组成的胶束在成核前后结构保持不变;3反应初期只生成具有吩嗪结构的寡聚物。较长的诱导期有助于反应前苯胺单体排列成棒状胶束,吩嗪寡聚物中高度共轭的芳环使之容易在反应前期与胶束中的苯胺相互作用,并且最终在棒状胶束的诱导下紧密排列成一维纳米棒。 展开更多
关键词 原位追踪核磁共振技术 棒状胶束 吩嗪结构寡聚物 π-π重叠作用 聚苯胺纳米棒
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