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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >EPR, ENDOR, and DFT study of free radicals in L- lysine·HCl·2H_2O single crystals X-irradiated at 298 K
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EPR, ENDOR, and DFT study of free radicals in L- lysine·HCl·2H_2O single crystals X-irradiated at 298 K

机译:EPR,ENDOR和DFT研究298 K X射线辐照的L-赖氨酸·HCl·2H_2O单晶中的自由基

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摘要

With K-band EPR (Electron Paramagnetic Resonance), ENDOR (Electron-Nuclear DOuble Resonance), and EIE (ENDOR-induced EPR) techniques, three free radicals (RI-RIII) in l-lysine hydrochloride dihydrate single crystals X-irradiated at 298 K were detected at 298 K, and six radicals (R1, R1′, R2-R5) were detected if the temperature was lowered to 66 K from 298 K. R1 and RI dominated the central portion of the EPR at 66 and 298 K, respectively, and were identified as main chain deamination radicals, -OOC?H(CH _2)_4(NH_3)~+. R1′ was identified as a main chain deamination radical with the different configuration from R1 at 66 K, and it probably formed during cooling the temperature from 298 to 66 K. The configurations of R1, R1′, and RI were analyzed with their coupling tensors. R2 and R3 each contain one α- and four β-proton couplings and have very similar EIEs at three crystallographic axes. The two-layer ONIOM calculations (at B3LYP/6-31G(d,p):PM3) support that R2 and R3 are from different radicals: dehydrogenation at C4, ~-OOCCH(NH_3) ~+CH_2?H(CH_2)_2(NH _3)~+, and dehydrogenation at C5, ~-OOCCH(NH _3)~+(CH_2)_2?HCH _2(NH_3)~+, respectively. The comparisons of the coupling tensors indicated that R2 (66 K) is the same radical as RII (298 K), and R3 is the same as RIII. Thus, RII and RIII also are the radicals of C4 and C5 dehydrogenation. R4 and R5 are minority radicals and were observed only when temperature was lowered to 66 K. R4 and R5 were only tentatively assigned as the side chain deamination radical, -OOCCH (NH3) +(CH2)3?H2, and the radical dehydrogenation at C3, ~-OOCCH(NH_3)~+? H(CH_2)_3(NH_3)~+, respectively, although the evidence was indirect. From simulation of the EPR (B//a, 66 K), the concentrations of R1, R1′, and R2-R5 were estimated as: R1, 50%; R1′, 11%; R2, 14%; R3, 16%; R4, 6%; R5, 3%.
机译:借助K波段EPR(电子顺磁共振),ENDOR(电子-核双共振)和EIE(ENDOR诱导的EPR)技术,L-赖氨酸盐酸盐二水合物单晶中的三个自由基(X-R)如果温度从298 K降至66 K,则在298 K时检测到298 K,并且检测到六个自由基(R1,R1',R2-R5)。R1和RI在66和298 K处主导着EPR的中心部分分别被鉴定为-OOC?H(CH _2)_4(NH_3)〜+。 R1'被鉴定为是主链脱氨基自由基,其构型与R1在66 K时不同,并且可能是在将温度从298冷却至66 K时形成的。 。 R2和R3各自包含一个α-质子耦合和四个β-质子耦合,并且在三个晶体学轴上具有非常相似的EIE。两层ONIOM计算(在B3LYP / 6-31G(d,p):PM3处)支持R2和R3来自不同的基团:C4处的脱氢,〜-OOCCH(NH_3)〜+ CH_2?H(CH_2)_2 (NH _3)〜+和C5处的脱氢,〜-OOCCH(NH _3)〜+(CH_2)_2→HCH _2(NH_3)〜+。耦合张量的比较表明,R2(66 K)与RII(298 K)是相同的基团,R3与RIII是相同的。因此,RII和RIII也是C4和C5脱氢的基团。 R4和R5是少数基团,只有在温度降至66K时才观察到。R4和R5仅被暂定为侧链脱氨基基团-OOCCH(NH3)+(CH2)3→H2,且在C3,〜-OOCCH(NH_3)〜+? H(CH_2)_3(NH_3)〜+,尽管证据是间接的。根据EPR(B // a,66 K)的模拟,R1,R1'和R2-R5的浓度估计为:R1,50%; R1',11%; R2,14%; R3,16%; R4,6%; R5,3%。

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