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Spectroscopy Investigation on Conformational Transition of Tea Glycoconjugate from Green Tea 总被引:5,自引:0,他引:5
The conformational transition of a new glycoconjugate, tea glycoconjugate (TGC), was investigated by spectroscopy techniques including circular dichroism (CD) and ultraviolet (UV) spectroscopy. The solution behaviors of TGC in the mediums of different temperature, pH value, and ions were compared. Results showed that the native conformation of TGC was partially ordered. The CD value and UV absorbance of TGC altered with the change of pH value, temperature, the addition of ions, and also accompanied order-disorder transition. Especially the conditions with temperature higher than the glass transition temperature (Tg=62℃), higher pH value or lower pH value will have the most impact on the conformation of TGC, which will destroy the hydrogen bonds between the TGC molecules. The results indicated that the outside factors play important roles on the stability of the conformation of TGC. 相似文献
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基于简单紧束缚方法理论,利用一维碳纳米管的量子化周期边界条件得到了碳纳米管的电子能级结构关系.并结合已报道的碳纳米管中电子与声子相互作用的实验结果,得到了碳纳米管能够辐射太赫兹波的结论.通过数值结果验证了碳纳米管在外场作用下能够产生太赫兹波,并对数值计算结果中太赫兹波的振荡现象给予合理的解释.其结果为进行碳纳米管产生太赫兹辐射的实验研究提供深入的理论基础.
关键词:
太赫兹波
碳纳米管 相似文献
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建立了以苯硼酸为衍生试剂,柱前衍生-高效液相色谱测定肥料中24-表芸苔素内酯(24-EBL)和28-高芸苔素内酯(28-HBR)的方法。样品采用甲醇作为提取溶剂,常温条件下用苯硼酸衍生30 min,乙腈/水(85/15, V/V)为流动相,在222 nm波长下进行分析。结果表明:在0~1250 mg/kg范围内线性关系良好,相关系数(r2)≥0.999。24-EBL和28-HBR的检出限分别为0.46和0.51 mg/kg。样品加标回收率为67.1%~128.5%,批间相对标准偏差为0.09%~2.4%。该方法满足2种芸苔素内酯异构体在肥料内定量分析的要求。 相似文献
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Pulse position modulation(PPM) is introduced downstream of the reflective semiconductor optical amplifier (RSOA)-based single-fiber full-duplex bidirectional wavelength division multiplex passive optical network(WDM PON) to suppress the interference brought by the remodulation effect in the RSOA, Rayleigh backscattering,and reflection of the connection devices.In addition,because of the powerefficient characteristic of the PPM-encoded signals,the power budget shows clear improvement.As the experimental tests indicate,with~6 dB extinction ratio(ER) in the downstream signal,the receiving sensitivity of the PPM-encoded channel is~2.6 and~3 dB higher than that of the NRZ(Non-return to zero)-encoded channel in the downlink and uplink,respectively. 相似文献
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