首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Free Radicals in L-Arginine-HCl-H2O Single Crystals X-irradiated at 66K-EPR, ENDOR, EIE and DFT Studies
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Free Radicals in L-Arginine-HCl-H2O Single Crystals X-irradiated at 66K-EPR, ENDOR, EIE and DFT Studies

机译:在66K-EPR,ENDOR,EIE和DFT研究中X射线照射的L-精氨酸-HCl-H2O单晶中的自由基

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摘要

X-irradiation of L-arginine hydrochloride monohydrate crystals at 66 K led to at least five radicals detectable with K-band Electron Paramagnetic Resonance (EPR), Electron-Nuclear DOuble Resonance (ENDOR) and ENDOR-induced EPR (EIE) techniques. Radicals Rla and Rib were identified as carboxyl-centered radicals from one-electron reduction, (H2OOC)CH (NH3)~+(CH2)3NHC(NH2)2~+ in two different conformations arising from the two geometrically distinct molecules of the asymmetric unit in the crystal. Density-Functional Theory (DFT) calculations on cluster models constructed separately for each molecule of the asymmetric unit support the assignments. Radical R2 was identified as the decarboxylation radical, CH(NH3)~+(CH2)3NHC (NH2)2~+. Radical R3, with two proton couplings and one nitrogen coupling, was identified as a radical with the unpaired electron localized on the guanidyl group, ~(OOC)CH(NH3)~+(CH2)3NHC(NH2)2~+. R3 is a product of one-electron reduction different from radicals Rla and Rib. DFT calculations on a cluster model reproduced the experimental values very well and thus supported the assignment of R3. Geometry optimization indicated that the guanidyl group transformed from planar to pyramidal upon trapping the electron. Radical R4 was identified as a side chain dehydrogenation radical, ~(OOC)CH(NH3)~+(CH2)2CH NHC(NH2)2~+. It was not possible to collect sufficient data to identify radical R5, although it clearly exhibited hyperfine coupling to one nonexchangeable β-proton.
机译:L-精氨酸盐酸盐一水合物晶体在66 K的X射线辐射下,至少可以通过K带电子顺磁共振(EPR),电子-核双共振(ENDOR)和ENDOR诱导的EPR(EIE)技术检测到五个自由基。自由基Rla和Rib通过单电子还原,(H2OOC)CH(NH3)〜+(CH2)3NHC(NH2)2〜+的单电子还原被鉴定为以羧基为中心的自由基,这是由两个不对称的两个几何上不同的分子产生晶体中的单位。为每个不对称单元的分子分别构建的簇模型上的密度泛函理论(DFT)计算支持该分配。自由基R 2被确定为脱羧基CH(NH 3)+(CH 2)3 NHC(NH 2)2 +。具有两个质子偶联和一个氮偶联的自由基R 3被鉴定为自由基,其未配对电子位于胍基上,〜(OOC)CH(NH 3)++(CH 2)3 NHC(NH 2)2-+。 R 3是与基团R 1a和Rib不同的单电子还原的产物。在群集模型上的DFT计算很好地再现了实验值,因此支持R3的分配。几何优化表明,在捕获电子后,胍基从平面转变为金字塔形。自由基R 4被鉴定为侧链脱氢基团〜(OOC)CH(NH 3)〜+(CH 2)2 CH NHC(NH 2)2〜。尽管它显然表现出与一个不可交换的β质子的超精细偶联,但无法收集足够的数据来鉴定基团R5。

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