Surface Passivation of InGaAs/InP p-i-n Photodiodes Using Epitaxial Regrowth of InP

2020 ◽  
Vol 20 (16) ◽  
pp. 9234-9244
Author(s):  
Osvaldo M. Braga ◽  
Cristian A. Delfino ◽  
Rudy M. S. Kawabata ◽  
Luciana Dornelas Pinto ◽  
Gustavo S. Vieira ◽  
...  
RSC Advances ◽  
2015 ◽  
Vol 5 (49) ◽  
pp. 39177-39181 ◽  
Author(s):  
Jae-Won Song ◽  
Yoon-Ho Nam ◽  
Min-Joon Park ◽  
Sun-Mi Shin ◽  
Ralf B. Wehrspohn ◽  
...  

Nanoscale epitaxy of silicon is found to deteriorate the passivation performance by ALD-Al2O3in nanostructured solar cells. Hydroxyl functionalization by oxygen plasma decreased the surface recombination velocity.


Sensors ◽  
2021 ◽  
Vol 21 (14) ◽  
pp. 4849
Author(s):  
Chan Hyeon Park ◽  
Jun Yong Kim ◽  
Shi-Joon Sung ◽  
Dae-Hwan Kim ◽  
Yun Seon Do

In this paper, we propose an optimized structure of thin Cu(In,Ga)Se2 (CIGS) solar cells with a grating aluminum oxide (Al2O3) passivation layer (GAPL) providing nano-sized contact openings in order to improve power conversion efficiency using optoelectrical simulations. Al2O3 is used as a rear surface passivation material to reduce carrier recombination and improve reflectivity at a rear surface for high efficiency in thin CIGS solar cells. To realize high efficiency for thin CIGS solar cells, the optimized structure was designed by manipulating two structural factors: the contact opening width (COW) and the pitch of the GAPL. Compared with an unpassivated thin CIGS solar cell, the efficiency was improved up to 20.38% when the pitch of the GAPL was 7.5–12.5 μm. Furthermore, the efficiency was improved as the COW of the GAPL was decreased. The maximum efficiency value occurred when the COW was 100 nm because of the effective carrier recombination inhibition and high reflectivity of the Al2O3 insulator passivation with local contacts. These results indicate that the designed structure has optimized structural points for high-efficiency thin CIGS solar cells. Therefore, the photovoltaic (PV) generator and sensor designers can achieve the higher performance of photosensitive thin CIGS solar cells by considering these results.


2021 ◽  
Vol 23 ◽  
pp. 100948
Author(s):  
Saif M.H. Qaid ◽  
Hamid M. Ghaithan ◽  
Bandar Ali Al-Asbahi ◽  
Abdullah S. Aldwayyan

2021 ◽  
Vol 129 (21) ◽  
pp. 215305
Author(s):  
Wei Zhao ◽  
Baptiste Bérenguier ◽  
Cendra Rakotoarimanana ◽  
Anne-Marie Gonçalves ◽  
Arnaud Etcheberry ◽  
...  

2021 ◽  
Vol 129 (4) ◽  
pp. 045302
Author(s):  
Liyan Dai ◽  
Gang Niu ◽  
Jinyan Zhao ◽  
Yingxian Xue ◽  
Ren Luo ◽  
...  

2021 ◽  
Vol 5 (1) ◽  
Author(s):  
Yung-Chang Lin ◽  
Sungwoo Lee ◽  
Yueh-Chiang Yang ◽  
Po-Wen Chiu ◽  
Gun-Do Lee ◽  
...  

AbstractInterhalogen compounds (IHCs) are extremely reactive molecules used for halogenation, catalyst, selective etchant, and surface modification. Most of the IHCs are unstable at room temperature especially for the iodine-monofluoride (IF) whose structure is still unknown. Here we demonstrate an unambiguous observation of two-dimensional (2D) IF bilayer grown on the surface of WSe2 by using scanning transmission electron microscopy and electron energy loss spectroscopy. The bilayer IF shows a clear hexagonal lattice and robust epitaxial relationship with the WSe2 substrate. Despite the IF is known to sublimate at −14 °C and has never found as a solid form in the ambient condition, but surprisingly it is found stabilized on a suitable substrate and the stabilized structure is supported by a density functional theory. This 2D form of IHC is actually a byproduct during a chemical vapor deposition growth of WSe2 in the presence of alkali metal halides as a growth promoter and requires immediate surface passivation to sustain. This work points out a great possibility to produce 2D structures that are unexpected to be crystallized or cannot be obtained by a simple exfoliation but can be grown only on a certain substrate.


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