Wang Caixing, He Dunyong, Wang Huaizhu, Guo Jiandong, Bao Zhuoheng, Feng Yuge, Hu Linfeng, Zheng Chenxi, Zhao Mengfan, Wang Xuemei, Wang Yanrong
Institute of Innovation Materials and Energy, School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou, Jiangsu, 225002, China.
School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, Jiangsu, 210023, China.
Adv Sci (Weinh). 2024 Aug;11(30):e2401314. doi: 10.1002/advs.202401314. Epub 2024 Jun 14.
Organic anodes have emerged as a promising energy storage medium in proton ion batteries (PrIBs) due to their ability to reversibly accommodate non-metallic proton ions. Nevertheless, the currently available organic electrodes often encounter dissolution issues, leading to a decrease in long-cycle stability. In addition, the inherent potential of the organic anode is generally relatively high, resulting in low cell voltage of assembled PrIBs (<1.0 V). To address these challenges, a novel long-period stable, low redox potential biphenylzine derivative, [2,2'-biphenazine]-7,7'-tetraol (BPZT) is explored, from the perspective of molecular symmetry and solubility, in conjunction with the effect of the molecular frontier orbital energy levels on its redox potential. Specifically, BPZT exhibited a low potential of 0.29 V (vs SHE) and is virtually insoluble in 2 m HSO electrolyte during cycling. When paired with MnO@GF or PbO cathodes, the resulting PrIBs achieve cell voltages of 1.07 V or 1.44 V, respectively, and maintain a high capacity retention of 90% over 20000 cycles. Additionally, these full batteries can operate stably at a high mass loading of 10 mg cm, highlighting their potential toward long-term energy storage applications.
由于能够可逆地容纳非金属质子离子,有机阳极已成为质子离子电池(PrIBs)中一种很有前景的储能介质。然而,目前可用的有机电极经常遇到溶解问题,导致长循环稳定性下降。此外,有机阳极的固有电位通常相对较高,导致组装的PrIBs电池电压较低(<1.0 V)。为应对这些挑战,从分子对称性和溶解性的角度,结合分子前沿轨道能级对其氧化还原电位的影响,探索了一种新型的长周期稳定、低氧化还原电位的联苯嗪衍生物,[2,2'-联苯嗪]-7,7'-四醇(BPZT)。具体而言,BPZT表现出0.29 V(vs SHE)的低电位,并且在循环过程中几乎不溶于2 m HSO电解质。当与MnO@GF或PbO阴极配对时,所得的PrIBs电池电压分别达到1.07 V或1.44 V,并在20000次循环中保持90%的高容量保持率。此外,这些全电池在10 mg cm的高质量负载下仍能稳定运行,突出了它们在长期储能应用方面的潜力。