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Approach to tune short-circuit current and open-circuit voltage of dye-sensitized solar cells: pi-linker modification and photoanode selection

机译:染料敏化太阳能电池的短路电流和开路电压调整方法:π-键修饰和光阳极选择

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摘要

The modification of pi-linkers represents a viable strategy to improve the performance of organic dye in dye-sensitized solar cells (DSSCs). On the basis of the pi-linker modification, four cyclic thiourea functionalized dyes (AZ260, AZ261, AZ262, and AZ263) were synthesized and their effects on the short-circuit current density (J(sc)) and open-circuit voltage (V-oc) were investigated. The results showed that AZ261 bearing an n-hexyl chain on the p-linker generated higher J(sc) (16.02 mA cm(-2)) and V-oc (739.4 mV) than AZ6 without a substituent on the bithiophene (J(sc) = 15.89 mA cm(-2), V-oc = 729.2 mV, PCE = 7.20%), and a higher PCE of 7.42% was obtained from AZ261. Furthermore, insertion of a double-bond into the pi-linker (AZ263) yielded the highest J(sc) (17.83 mA cm(-2)) with a somewhat lower V-oc (719.2 mV), and delivered the highest PCE up to 8.24%. In addition, the function of mesoporous spherical TiO2 on the photoanodes were also systematically examined and proven to be beneficial in increasing the J(sc).
机译:π-连接基的修饰代表了一种可行的策略,可以改善染料敏化太阳能电池(DSSC)中有机染料的性能。在pi接头修饰的基础上,合成了四种环状硫脲官能化染料(AZ260,AZ261,AZ262和AZ263)及其对短路电流密度(J(sc))和开路电压(V)的影响-oc)进行了调查。结果表明,与在联噻吩上没有取代基的AZ6相比,在p-接头上带有正己基链的AZ261产生更高的J(sc)(16.02 mA cm(-2))和V-oc(739.4 mV)。 sc)= 15.89 mA cm(-2),V-oc = 729.2 mV,PCE = 7.20%,并且从AZ261获得了7.42%的更高PCE。此外,将双键插入pi接头(AZ263)产生最高的J(sc)(17.83 mA cm(-2)),而V-oc稍低(719.2 mV),并提供了最高的PCE至8.24%。另外,还对介孔球形TiO2在光阳极上的功能进行了系统检查,并证明对提高J(sc)有利。

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