Box H C, Budzinski E E, Freund H G
Biophysics Department, Roswell Park Memorial Institute, Buffalo, New York 14263.
Radiat Res. 1990 Mar;121(3):262-6.
The electrons trapped in single crystals of rhamnose X-irradiated at low temperature were studied by ENDOR spectroscopy. Hyperfine couplings of protons in the environs of the electron have been determined from ENDOR measurements, including those of some of the more remote carbon-bound hydrogen atoms. The likely site of electron trapping in the crystal structure of rhamnose was inferred from calculations of the electric potential generated by the dipoles of hydroxy groups about preexisting void spaces. Electron-proton distances for nonexchangeable hydrogen atoms from points within the void were calculated from the crystal structure and compared with distances obtained from hyperfine couplings. Good agreement was obtained between experimental and calculated values.
通过电子核双共振光谱研究了在低温下经X射线辐照的鼠李糖单晶中捕获的电子。已从电子核双共振测量中确定了电子周围质子的超精细耦合,包括一些距离较远的与碳相连的氢原子的超精细耦合。通过计算羟基偶极子围绕预先存在的空隙产生的电势,推断出鼠李糖晶体结构中电子捕获的可能位置。根据晶体结构计算了空隙内各点不可交换氢原子的电子 - 质子距离,并与从超精细耦合获得的距离进行比较。实验值与计算值之间取得了良好的一致性。