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Electrochemical and spectroscopic measurements for stable nitroxyl radicals

机译:电化学和光谱测量法测定稳定的硝氧基自由基

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摘要

A nitroxyl radical, 2,2,6,6-tetramethyl-1-piperidinyloxy (TEMPO), is known to be oxidized electrochemically at 3.5V versus lithium [4,5]. Since this reaction is reversible in the aprotic electrolyte, we can use it as a cathode reaction in lithium rechargeable battery. Some nitroxyl radical compounds which have different structures have been prepared and their electrochemical behavior and spectroscopic properties have been studied. The electrochemical measurements in aprotic electrolyte revealed that most nitroxyl radical compounds show reversible redox behavior similar to that of TEMPO independent of their structures in the range of -0.15-0.20 V versus Ag/Ag{sup}+ (3.69-4.04 V versus Li/Li{sub}+). The redox potentials for these materials were found to be predictable approximately by quantum calculations. Thus, various molecular designs tailored to desired redox potentials would be possible as active materials for lithium rechargeable batteries, and their specific capacities, mechanical properties and colors can be controlled within limits.
机译:已知2,2,6,6-四甲基-1-哌啶基氧基(TEMPO)的硝酰自由基在3.5V的条件下相对于锂[4,5]被电化学氧化。由于该反应在非质子电解质中是可逆的,因此我们可以将其用作可充电锂电池的阴极反应。制备了一些具有不同结构的硝氧基自由基化合物,并研究了它们的电化学行为和光谱性质。在非质子电解质中的电化学测量表明,大多数硝酰自由基化合物在-0.15-0.20 V对Ag / Ag {sup} +(3.69-4.04 V对Li / Li {sub} +)。发现这些材料的氧化还原电势可通过量子计算近似预测。因此,适合于期望的氧化还原电势的各种分子设计作为锂可再充电电池的活性材料将是可能的,并且它们的比容量,机械性能和颜色可以被控制在极限内。

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