Patil Yuvraj, Misra Rajneesh, Singh Manish Kumar, Sharma Ganesh D
Department of Chemistry, Indian Institute of Technology, Indore 453552, India.
Department of Physics, The LNM Institute of Technology (Deemed University), Jamdoli, Jaipur, Rajasthan 302031, India.
Phys Chem Chem Phys. 2017 Mar 8;19(10):7262-7269. doi: 10.1039/c7cp00231a.
A symmetrical D-π-A-π-D type small molecule consisting of thiophene flanked diketopyrrolopyrrole (DPP) as a core and an end capping ferrocene donor linked by an ethynyl bridge, denoted as Fc-DPP-Fc, was synthesized and its optical, thermal and electrochemical properties were investigated in order to explore its potential applicability as a donor for solution processed bulk heterojunction solar cells. The photophysical and electrochemical properties of this small molecule showed strong charge transfer interaction between the ferrocene donor and the DPP acceptor, and it is found to be suitable as a small molecule donor along with PCBM as an electron acceptor for solution processed bulk heterojunction organic solar cells (OSCs). Although the open circuit voltage (V) of the OSC based on as cast Fc-DPP-Fc : PCBM (1 : 2 weight ratio) from a THF solvent is quite high (0.98 V), it showed an overall power conversion efficiency (PCE) of 2.55% with low values of short circuit current (J) and fill factor (FF) of 6.35 mA cm and 0.41, respectively. After using a solvent additive (SA), i.e. 3 v% DIO/THF solution for film deposition, the resultant OSC showed an improved overall PCE of 4.83% and it further improved up to 6.44%. The improvement in the PCE value is mainly attributed to the enhancement in J and FF, resulting from the increased light harvesting efficiency, balanced charge transport and favorable nanoscale morphology of the active layer, induced by SA and TSA.
合成了一种对称的D-π-A-π-D型小分子,其核心为噻吩桥连的二酮吡咯并吡咯(DPP),末端封端的二茂铁供体通过乙炔桥连接,记为Fc-DPP-Fc,并对其光学、热学和电化学性质进行了研究,以探索其作为溶液处理体异质结太阳能电池供体的潜在适用性。该小分子的光物理和电化学性质表明二茂铁供体与DPP受体之间存在强烈的电荷转移相互作用,并且发现它适合作为小分子供体,与PCBM作为电子受体用于溶液处理体异质结有机太阳能电池(OSC)。尽管基于四氢呋喃溶剂浇铸的Fc-DPP-Fc : PCBM(重量比1 : 2)的OSC的开路电压(V)相当高(0.98 V),但其整体功率转换效率(PCE)为2.55%,短路电流(J)和填充因子(FF)的值较低,分别为6.35 mA cm和0.41。使用溶剂添加剂(SA),即3 v%二碘辛烷/四氢呋喃溶液进行薄膜沉积后,所得OSC的整体PCE提高到4.83%,进一步提高到6.44%。PCE值的提高主要归因于J和FF的增强,这是由SA和TSA诱导的光捕获效率提高、电荷传输平衡以及活性层良好的纳米级形态所致。