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61.
Michele Kelley Nicholas Bryden Sebastian William Atalla Rosa Tamara Branca 《Chemphyschem》2023,24(19):e202300284
Ultra-low field nuclear magnetic resonance spectroscopy (NMR) and imaging (MRI) inherently suffer from a low signal-to-noise ratio due to the small thermal polarization of nuclear spins. Transfer of polarization from a pre-polarized spin system to a thermally polarized spin system via the Spin Polarization Induced Nuclear Overhauser Effect (SPINOE) could potentially be used to overcome this limitation. SPINOE is particularly advantageous at ultra-low magnetic field, where the transferred polarization can be several orders of magnitude higher than thermal polarization. Here we demonstrate direct detection of polarization transfer from highly polarized 129Xe gas spins to 1H spins in solution via SPINOE. At ultra-low field, where thermal nuclear spin polarization is close to background noise levels and where different nuclei can be simultaneously detected in a single spectrum, the dynamics of the polarization transfer can be observed in real time. We show that by simply bubbling hyperpolarized 129Xe into solution, we can enhance 1H polarization levels by a factor of up to 151-fold. While our protocol leads to lower enhancements than those previously reported under extreme Xe gas pressures, the methodology is easily repeatable and allows for on-demand enhanced spectroscopy. SPINOE at ultra-low magnetic field could also be employed to study 129Xe interactions in solutions. 相似文献
62.
Marzena Jankowska Teobald Kupka Leszek Stobiński Rasmus Faber Evanildo G. Lacerda Jr. Stephan P. A. Sauer 《Journal of computational chemistry》2016,37(4):395-403
Hartree–Fock and density functional theory with the hybrid B3LYP and general gradient KT2 exchange‐correlation functionals were used for nonrelativistic and relativistic nuclear magnetic shielding calculations of helium, neon, argon, krypton, and xenon dimers and free atoms. Relativistic corrections were calculated with the scalar and spin‐orbit zeroth‐order regular approximation Hamiltonian in combination with the large Slater‐type basis set QZ4P as well as with the four‐component Dirac–Coulomb Hamiltonian using Dyall's acv4z basis sets. The relativistic corrections to the nuclear magnetic shieldings and chemical shifts are combined with nonrelativistic coupled cluster singles and doubles with noniterative triple excitations [CCSD(T)] calculations using the very large polarization‐consistent basis sets aug‐pcSseg‐4 for He, Ne and Ar, aug‐pcSseg‐3 for Kr, and the AQZP basis set for Xe. For the dimers also, zero‐point vibrational (ZPV) corrections are obtained at the CCSD(T) level with the same basis sets were added. Best estimates of the dimer chemical shifts are generated from these nuclear magnetic shieldings and the relative importance of electron correlation, ZPV, and relativistic corrections for the shieldings and chemical shifts is analyzed. © 2015 Wiley Periodicals, Inc. 相似文献
63.
Pressure-induced structural changes in solid krypton (Kr) and xenon (Xe) have been studied using angle dispersive X-ray diffraction in a diamond-anvil cell (DAC) up to 50 GPa. The analysis of the results shows that in solid Kr (Xe) the phase transition from fcc to hcp starts below 3.2 GPa (1.5 GPa). Albeit the hcp/fcc ratio increases under pressure, both phases coexist up to the highest pressure reached in this study. Room temperature (RT) equations of state (EOS) are determined. 相似文献
64.
用脉冲直流放电产生Xe原子亚稳态5p56s[3/2]2和5p56s′[1/2]0.在单光子28000-42000cm-1能量范围内,结合飞行时间质谱技术获得Xe原子共振增强激发光谱.光谱分析表明,所有谱线来源于Xe原子5p56s[3/2]2和5p56s′[1/2]0两个亚稳态吸收单个光子向偶宇称np′、nf′自电离Rydberg态序列的跃迁.实验观测到许多新的自电离能级,并获得更精确和系统的能级位置和量子亏损值数据. 相似文献
65.
Approximation functions describing the experimental data of thermal conductivity and viscosity of chosen gases (CO2, N2, He, Xe, CO, O2, Ar) are given in the paper. Introduced formulas allow to predict thermal conductivity and temperature distribution of typical high-power laser gas mixture. Examples of temperature distribution in RF excited CO2, CO, and Xe laser media are shown. Knowledge of the temperature distribution in the laser cavity can be useful for predicting the general properties of laser. 相似文献
66.
理论和实验上研究了Xe介质毛细管放电极紫外光源等离子体时间特性和最佳条件. 从理论上建立了Xe介质一维辐射磁流体力学模型,模拟了不同气压和电流条件下等离子体压缩和辐射特性;实验上测量了放电电流30 kA时不同气压条件下13.5 nm (2%带宽)动态特性. 理论和实验结果表明:不同放电电流条件下,存在最佳气压值,最佳气压随着电流的增加而增加;同时,电流增加时,13.5 nm (2%带宽)辐射光强峰值时刻减小.
关键词:
极紫外光刻光源
毛细管放电
磁流体力学
Xe等离子体 相似文献
67.
68.
在相同浓度下,超极化129Xe的核磁共振(NMR)灵敏度是传统质子NMR的10 000倍以上,但单原子Xe不具有靶向性,只有单一NMR信号.若超极化129Xe与“分子笼”相结合,就能获得新的“笼”内Xe信号,为发展超极化129Xe分子探针奠定基础.因此,构建新型的“分子笼”是发展新型超极化129Xe分子探针的一个重要方向.葫芦[6]脲纳米颗粒的出现能改善以葫芦[6]脲为主体的129Xe分子探针水溶性差、信号弱等缺点.本文构建了水溶性的葫芦[6]脲纳米颗粒,并发现其具有葫芦[6]脲/纳米颗粒内部两个“笼”内129Xe信号.这一发现使这种纳米颗粒具有成为超极化129Xe分子探针的潜力,能降低检测结果中假阳性和假阴性的发生率,值得更深入的探索和研究. 相似文献
69.
甲醇制烯烃过程是由非石油路线生成低碳烯烃的重要途径之一.分子筛因具备独特的孔结构和可调变的酸性质,而成为甲醇制烯烃过程的核心催化剂.固体核磁共振(NMR)是鉴定物质结构、阐释催化反应机理的强有力的工具,在甲醇制烯烃的研究中被广泛应用.本文主要总结了近年来利用原位固体NMR、多维多核NMR、脉冲梯度场NMR等固体NMR技术研究甲醇制烯烃反应机理取得的重要进展.原位固体NMR可以在真实反应条件下监测催化反应中反应物、中间体和产物的动态演变过程;多维多核NMR可以在不破坏催化剂结构情况下确定反应中间体结构信息,特别是129Xe NMR可以很灵敏探测反应中催化剂的孔道结构变化;脉冲梯度场NMR可用于测定孔道内分子的扩散系数,阐明分子筛的扩散机制. 相似文献
70.
本文报道双光子激发的Xe(5p~56p)态在二十余种气体中的淬灭速率常数的测定,对于碰撞淬灭反应的产物进行了扼要的分析讨论。 相似文献