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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >IDENTIFICATION OF THE 1,3,2,4-DITHIADIAZOLYL RCNSNS(CENTER-DOT) RADICAL DIMERS IN SOLUTION, THEIR DIMERIC CONCERTED PHOTOCHEMICALLY SYMMETRY-ALLOWED REARRANGEMENT TO 1,2,3,5-DITHIADIAZOLYL RCNSSN(CENTER-DOT) BY THE NET EXCHANGE OF ADJACENT CYCLIC SUL
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IDENTIFICATION OF THE 1,3,2,4-DITHIADIAZOLYL RCNSNS(CENTER-DOT) RADICAL DIMERS IN SOLUTION, THEIR DIMERIC CONCERTED PHOTOCHEMICALLY SYMMETRY-ALLOWED REARRANGEMENT TO 1,2,3,5-DITHIADIAZOLYL RCNSSN(CENTER-DOT) BY THE NET EXCHANGE OF ADJACENT CYCLIC SUL

机译:溶液中1,3,2,4-二噻二唑RCNSNS(中心点)自由基直径的识别,其二聚体通过光化学对称重排至1,2,3,5-二噻二唑RCNSSN(中心)相邻循环SUL的交换

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The 1,3,2,4-dithiadiazolyl RCNSNS(.) radicals undergo an unprecedented concerted rearrangement to the thermodynamically more stable 1,2,3,5-dithiadiazolyl RCNSSN(.) radicals by the net exchange of adjacent cyclic sulfur and nitrogen atoms. The UV-visible spectra of RCNSNS(.) (R = Ph, p-O2NC6H4, 3,5-(O2N)(2)C6H3, CF3) in solution show bands at 250 nm (strong) and 680 nm (very weak) attributable to monomer and two dimer bands at 376 and 480 nn, the positions of which are independent of the substituents, providing direct identification of the radical dimers in solution. The dimerization equilibrium constant (K-298 similar or equal to 0.7 for R = Ph) at room temperature was derived from the enthalpy and entropy changes for the dimerization of PhCNSNS(.) (Delta H-d(o) = -19.0 kJ/mol, Delta S-d degrees = -66.5 J/mol) estimated by a variable-temperature ESR spectroscopic study. In addition, RCNSNS(.) (R Bu(t), Ph) undergo an apparent unimolecular photolysis to RCN and possibly SNS. (analogue of ONO.). The photochemical rearrangement and dissociation (for R = Ph and 3,5-(O2N)(2)C6H3) were shown to proceed by irradiation of the radical dimer (376 and 480 nm) and monomer (250 nm), respectively. Thus, the radical rearrangement reasonably occurs via a concerted dimeric pathway shown by molecular orbital calculations (CNDO) to be photochemically symmetry-allowed. In addition, we propose that the radical dissociation proceeds via a concerted unimolecular photochemically symmetry-allowed process. [References: 46]
机译:1,3,2,4-二硫二唑基RCNSNS(。)基团通过相邻环硫和氮原子的净交换,经历了前所未有的协同重排,从而热力学上更稳定的1,2,3,5-二硫二唑基RCNSSN(。)基团。溶液中RCNSNS(。)的紫外可见光谱(R = Ph,p-O2NC6H4,3,5-(O2N)(2)C6H3,CF3)在250 nm(强)和680 nm(非常弱)处显示出谱带这归因于在376和480 nn处的单体和两个二聚体带,其位置与取代基无关,可直接识别溶液中的自由基二聚体。从PhCNSNS(。)二聚化的焓和熵变化得出室温下的二聚化平衡常数(K = 298,R = Ph等于0.7)(ΔHd(o)= -19.0 kJ / mol,通过可变温度ESR光谱研究估算的Delta Sd度= -66.5 J / mol。此外,RCNSNS(。)(R Bu(t),Ph)经历了明显的单分子光解,从而对RCN以及可能对SNS进行了光解。 (类似ONO。)。分别通过自由基二聚体(376和480 nm)和单体(250 nm)的辐照,进行了光化学重排和解离(对于R = Ph和3,5-(O2N)(2)C6H3)。因此,自由基重排合理地通过由分子轨道计算(CNDO)显示的一致的二聚途径发生,从而允许光化学对称。另外,我们提出自由基的解离通过一致的单分子光化学对称性允许的过程进行。 [参考:46]

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