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Emission-wavelength-dependent photoluminescence decay lifetime of N-functionalized graphene quantum dot downconverters: Impact on conversion efficiency of Cu(In, Ga)Se2 solar cells

机译:N-官能化石墨烯量子点下变频器的发射波长依赖性光致发光衰减寿命:对Cu(IN,GA)SE2太阳能电池的转化效率的影响

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Graphene quantum dots (GQDs) have several advantages over inorganic quantum dots owing to their beneficial properties. Recently, GQDs have been used as downconverters in photovoltaic devices. However, the application of GQDs in most emergent thin-film-based Cu(In, Ga)Sesub2/sub (CIGS) photovoltaic cells is limited because of either low photoluminescence (PL) quantum yield (QY) or a small Stokes shift (Δλ). Therefore, GQDs with an ultrahigh QY and large Δλ are essential to realizing the two emergent fields, i.e., the application of GQDs in CIGS photovoltaic solar cells. In this regard, we synthesized nitrogen-functionalized GQDs (NGQDs) with an ultrahigh QY (77-99%) and a large Δλ (95-155?nm) via tailoring of the nitrogen and oxygen moieties. The NGQDs were applied in CIGS solar cells to evaluate their downconversion efficiency. Our study shows that the emission wavelength (λsubem/sub)-dependent photoluminescence decay lifetime (τsubem/sub) determines the down-conversion efficiency of the nitrogen-functionalized graphene quantum dots. With the increase in τsubem/sub at λsubem/sub??500?nm, the conversion efficiencies of the NGQDs coated-CIGS solar cells increased by 12.22%. Thus, the increase in τsubem/sub at λsubem/sub??500?nm significantly increased the maximum current output and thus enhanced the solar-cell performance.
机译:由于其有益特性,石墨烯量子点(GQDS)具有对无机量子点的几个优点。最近,GQD已被用作光伏器件中的下变频器。然而,由于低光致发光(PL)量子产量(QY)或一个小的斯托克斯偏移(Δλ)。因此,具有超高QY和大Δλ的GQD对于实现两个紧急领域,即GQD在CIGS光伏太阳能电池中的应用是必不可少的。在这方面,通过剪裁氮气和氧气部分,通过少剪裁氮官能化GQDS(NGQDS)和大Δλ(95-155ΩNM)合成氮官能化GQDS(NgQDS)。将NGQDS应用于CIGS太阳能电池中以评估其下变频效率。我们的研究表明,发射波长(λ<亚em ) - 依赖性光致发光衰减寿命(τ em )决定了氮官能化石墨烯量子点的下转换效率。随着λ em 在λ em α>500μm的增加,NGQDS涂层 - CIGS太阳能电池的转化效率增加了12.22%。因此,τ em 在λ em α>Δθmm的增加显着增加了最大电流输出,从而提高了太阳能电池性能。

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