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具有改善功函数的硼掺杂纳米晶薄膜作为薄膜硅太阳能电池的缓冲层

Boron Doped Nanocrystalline Film with Improved Work Function as a Buffer Layer in Thin Film Silicon Solar Cells.

作者信息

Park Jinjoo, Shin Chonghoon, Park Hyeongsik, Jung Junhee, Lee Youn-Jung, Bong Sungjae, Dao Vinh Ai, Balaji Nagarajan, Yi Junsin

出版信息

J Nanosci Nanotechnol. 2015 Mar;15(3):2241-6. doi: 10.1166/jnn.2015.10241.

Abstract

We investigated thin film silicon solar cells with boron doped hydrogenated nanocrystalline silicon/ hydrogenated amorphous silicon oxide [p-type nc-Si:H/a-SiOx:H] layer. First, we researched the bandgap engineering of diborane (B2H6) doped wide bandgap hydrogenated nanocryslline silicon (p-type nc-Si:H) films, which have excellent electrical properties of high dark conductivity, and low activation energy. The films prepared with lower doping ratio and higher hydrogen dilution ratio had higher optical gap (Eg), with higher dark conductivity (σ(d)), and lower activation energy (Ea). We controlled Eg from 2.10 eV to 1.75 eV, with σ(d) from 1.1 S/cm to 7.59 x 10(-3) S/cm, and Ea from 0.040 eV to 0.128 eV. Next, we focused on the fabrication of thin film silicon solar cells. By inserting p-type nc-Si:H film into the thin film silicon solar cells, we achieved a remarkable increase in the built-in potential from 0.803 eV to 0.901 eV. By forming p-type nc-Si:H film between SnO2:F/ZnO:Al (30 nm) and p-type a-SiOx:H layer, the solar cell properties of open circuit voltage (Voc), short circuit current density (Jsc), and efficiency (η) were improved by 3.7%, 9.2%, and 9.8%, respectively.

摘要

我们研究了具有硼掺杂氢化纳米晶硅/氢化非晶硅氧化物[p型nc-Si:H/a-SiOx:H]层的薄膜硅太阳能电池。首先,我们研究了二硼烷(B2H6)掺杂的宽带隙氢化纳米晶硅(p型nc-Si:H)薄膜的带隙工程,该薄膜具有高暗电导率和低激活能等优异电学性能。以较低掺杂比和较高氢稀释比制备的薄膜具有更高的光学带隙(Eg)、更高的暗电导率(σ(d))和更低的激活能(Ea)。我们将Eg从2.10 eV控制到1.75 eV,σ(d)从1.1 S/cm控制到7.59×10(-3) S/cm,Ea从0.040 eV控制到0.128 eV。接下来,我们专注于薄膜硅太阳能电池的制造。通过将p型nc-Si:H薄膜插入薄膜硅太阳能电池中,我们实现了内建电势从0.803 eV显著增加到0.901 eV。通过在SnO2:F/ZnO:Al(30 nm)和p型a-SiOx:H层之间形成p型nc-Si:H薄膜,开路电压(Voc)、短路电流密度(Jsc)和效率(η)等太阳能电池性能分别提高了3.7%、9.2%和9.8%。

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