Review of advanced hydrogen passivation for high efficient crystalline silicon solar cells

被引:44
|
作者
Lee, Sang Hee [1 ]
Bhopal, Muhammad Fahad [1 ]
Lee, Doo Won [1 ]
Lee, Soo Hong [1 ]
机构
[1] Sejong Univ, Dept Elect Engn, Green Strateg Energy Res Inst, 98 Gunja Dong, Seoul 143747, South Korea
关键词
Silicon solar cells; Hydrogen; Defect passivation; Minority carrier lifetime; Laser; MINORITY-CARRIER LIFETIME; BORON-OXYGEN COMPLEX; N-TYPE; MULTICRYSTALLINE SILICON; P-TYPE; DEFECT PASSIVATION; CHARGE STATES; POINT-DEFECTS; SINX LAYERS; DISSOCIATION;
D O I
10.1016/j.mssp.2018.01.019
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Hydrogen passivation, such as forming gas annealing and alneal (aluminum anneal) process, has been investigated for high efficient crystalline silicon solar cell structures, because the hydrogen atoms can reduce the surface recombination velocity. However, hydrogen could not diffuse deeply to passivate various defects within the silicon bulk. Further investigations into the properties of hydrogen in the silicon lead to the control of hydrogen atoms' charge states for their high diffusivity and reactivity. Also, research of the hydrogenated amorphous silicon nitride (a-SiNx:H) as a hydrogen source induced an 'advanced hydrogen passivation'. This paper provides a review of advanced hydrogen passivation applied on p-type, n-type and upgraded metallurgical grade crystalline silicon solar cells, respectively. Especially, the regeneration of boron-oxygen related defects, which cause carrier induced degradation, will be closely discussed since most of industrial solar cells are fabricated by boron-doped p-type silicon wafer. Moreover, laser-induced hydrogen passivation, which can locally recover defective area on the solar cells, will be addressed. In the conclusion, proper conditions of advanced hydrogen passivation for the successful improvement of minority carrier lifetime will be summarized.
引用
收藏
页码:66 / 73
页数:8
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