Shukor Nurul Izzati Abdul, Chan Kah-Yoong, Thien Gregory Soon How, Yeoh Mian-En, Low Pei-Ling, Devaraj Nisha Kumari, Ng Zi-Neng, Yap Boon Kar
Centre for Advanced Devices and Systems, Faculty of Engineering, Multimedia University, Persiaran Multimedia, Cyberjaya 63100, Selangor, Malaysia.
Intel Corporation, Bayan Lepas 11900, Pulau Pinang, Malaysia.
Sensors (Basel). 2023 Oct 12;23(20):8412. doi: 10.3390/s23208412.
Solar cells are pivotal in harnessing renewable energy for a greener and more sustainable energy landscape. Nonetheless, eco-friendly materials for solar cells have not been as extensive as conventional counterparts, highlighting a significant area for further investigation in advancing sustainable energy technologies. This study investigated natural dyes from cost-effective and environmentally friendly blueberries and mulberries. These dyes were utilized as alternative sensitizers for dye-sensitized solar cells (DSSCs). Alongside the natural dyes, a green approach was adopted for the DSSC design, encompassing TiO photoanodes, eco-friendly electrolytes, and green counter-electrodes created from graphite pencils and candle soot. Consequently, the best-optimized dye sensitizer was mulberry, with an output power of 13.79 µW and 0.122 µW for outdoor and indoor environments, respectively. This study underscored the feasibility of integrating DSSCs with sensitizers derived from readily available food ingredients, potentially expanding their applications in educational kits and technology development initiatives.
太阳能电池对于利用可再生能源构建更绿色、更可持续的能源格局至关重要。然而,用于太阳能电池的环保材料不如传统材料广泛,这凸显了在推进可持续能源技术方面需要进一步研究的重要领域。本研究调查了来自具有成本效益且环保的蓝莓和桑椹的天然染料。这些染料被用作染料敏化太阳能电池(DSSC)的替代敏化剂。除了天然染料外,DSSC设计还采用了绿色方法,包括TiO光阳极、环保电解质以及由石墨铅笔和蜡烛烟灰制成的绿色对电极。因此,优化效果最佳的染料敏化剂是桑椹,在室外和室内环境中的输出功率分别为13.79微瓦和0.122微瓦。本研究强调了将DSSC与源自现成食品成分的敏化剂相结合的可行性,这可能会扩大其在教育套件和技术开发项目中的应用。