SIMS Analysis of Cu in ZnTe-based Back Contacts for CdTe/CdS Solar Cells

SIMS Analysis of Cu in ZnTe-based Back Contacts for CdTe/CdS Solar Cells PDF Author: Chitra Narayanswamy
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ISBN:
Category : Secondary ion mass spectrometry
Languages : en
Pages : 146

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SIMS Analysis of Cu in ZnTe-based Back Contacts for CdTe/CdS Solar Cells

SIMS Analysis of Cu in ZnTe-based Back Contacts for CdTe/CdS Solar Cells PDF Author: Chitra Narayanswamy
Publisher:
ISBN:
Category : Secondary ion mass spectrometry
Languages : en
Pages : 146

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Analysis of Cu Difusion in ZnTe-Based Contacts for Thin-Film CdS/CdTe Solar Cells

Analysis of Cu Difusion in ZnTe-Based Contacts for Thin-Film CdS/CdTe Solar Cells PDF Author:
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ISBN:
Category :
Languages : en
Pages : 0

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Ohmic contacts to thin-film CdS/CdTe photovoltaic devices have been formed using a two-layer contact interface of undoped ZnTe (ZnTe) and Cu-doped ZnTe (ZnTe:Cu), followed by Ni or Ti as an outer metallization. Secondary ion mass spectroscopy (SIMS) is used to study Cu diffusion within this back-contact structure, and also, to monitor Cu diffusion from the contact into the CdTe. When Nimetallization is used, the ZnTe:Cu layer becomes increasingly depleted of Cu, and Ni diffusion into the ZnTe:Cu increases as the contact deposition temperature increases from 100 deg. C to 300 deg. C. Cu depletion is not observed when Ni is replaced with Ti. Diffusion of Cu from the ZnTe:Cu layer into the ZnTe layer also increases with contact deposition temperature, and produces a buildup of Cuat the ZnTe/CdTe interface. High-mass resolution SIMS indicates that, although Cu levels in the CdTe remain low, Cu diffusion from the contact proceeds into the CdTe layer and toward the CdTe/CdS junction region.

Analysis of Cu Diffusion in ZnTe-Based Contacts for Thin-Film CdS

Analysis of Cu Diffusion in ZnTe-Based Contacts for Thin-Film CdS PDF Author:
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ISBN:
Category :
Languages : en
Pages : 5

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Ohmic contacts to thin-film CdS/CdTe photovoltaic devices have been formed using a two-layer contact interface of undoped ZnTe (ZnTe) and Cu-doped ZnTe (ZnTe:Cu), followed by Ni or Ti as an outer metallization. Secondary ion mass spectroscopy (SIMS) is used to study Cu diffusion within this back-contact structure, and also, to monitor Cu diffusion from the contact into the CdTe. When Ni metallization is used, the ZnTe:Cu layer becomes increasingly depleted of Cu, and Ni diffusion into the ZnTe:Cu increases as the contact deposition temperature increases from 100 C to 300 C. Cu depletion is not observed when Ni is replaced with Ti. Diffusion of Cu from the ZnTe:Cu layer into the ZnTe layer also increases with contact deposition temperature, and produces a buildup of Cu at the ZnTe/CdTe interface. High-mass resolution SIMS indicates that, although Cu levels in the CdTe remain low, Cu diffusion from the contact proceeds into the CdTe layer and toward the CdTe/CdS junction region.

Analysis of the ZnTe:CU Contact on CdS/CdTe Solar Cells

Analysis of the ZnTe:CU Contact on CdS/CdTe Solar Cells PDF Author:
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ISBN:
Category : Cadmium sulfide photoconductive cells
Languages : en
Pages :

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Effects of Cu Diffusion from ZnTe:Cu/Ti Contacts on Carrier Lifetime of CdS/CdTe Thin Film Solar Cells

Effects of Cu Diffusion from ZnTe:Cu/Ti Contacts on Carrier Lifetime of CdS/CdTe Thin Film Solar Cells PDF Author:
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Category : Cadmium sulfide photoconductive cells
Languages : en
Pages : 18

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Analysis of the ZnTe

Analysis of the ZnTe PDF Author: M. J. Romero
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Category :
Languages : en
Pages : 9

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We report on the recent use of cathodoluminescence (CL) to probe the depth-dependent changes in radiative recombination that occur in CdTe devices during ZnTe:Cu contacting procedures. These types of CL measurements may be useful to assist in linking impurity diffusion (e.g., Cu) from the contact with depth-dependent variation in electrical activation within the CdTe layer. Variable-energy CL suggests that diffusion from the ZnTe:Cu contact interface may assist in reducing donors levels in the CdTe bulk, and thereby yield p-type material in the region near the contact. CL analysis near abrupt metal discontinuities provides estimates of diffusion lengths for carriers associated with both excitonic and donor-to-acceptor pair recombination. Finally, CL measurements at increasing excitation levels (i.e., increasing electron-beam current) provides estimates of the defect state density, as well as providing evidence that discrete multiple defect bands may exist in CdTe prior to contacting.

Electrical Characterization of Cu Composition Effects in CdS/CdTe Thin-Film Solar Cells with a ZnTe:Cu Back Contact: Preprint

Electrical Characterization of Cu Composition Effects in CdS/CdTe Thin-Film Solar Cells with a ZnTe:Cu Back Contact: Preprint PDF Author:
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Category :
Languages : en
Pages : 0

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We study the effects of Cu composition on the CdTe/ZnTe:Cu back contact and the bulk CdTe. For the back contact, its potential barrier decreases with Cu concentration while its saturation current density increases. For the bulk CdTe, the hole density increases with Cu concentration. We identify a Cu-related deep level at0.55 eV whose concentration is significant when the Cu concentration ishigh. The device performance, which initially increases with Cu concentration then decreases, reflects the interplay between the positive influences and negative influences (increasing deep levels in CdTe) of Cu.

Molecular Dynamics Study of Poly and Monocrystalline CdS/CdTe Junctions and Cu Doped ZnTe Back Contacts for Solar Cell Applications

Molecular Dynamics Study of Poly and Monocrystalline CdS/CdTe Junctions and Cu Doped ZnTe Back Contacts for Solar Cell Applications PDF Author: Rodolfo Aguirre (II)
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ISBN:
Category : Cadmium telluride
Languages : en
Pages : 59

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Studies of ZnTe Back Contacts to CdS/CdTe Solar Cells

Studies of ZnTe Back Contacts to CdS/CdTe Solar Cells PDF Author:
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Category :
Languages : en
Pages : 0

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Development of ZnTe:Cu Contacts for CdTe Solar Cells: Cooperative Research and Development Final Report, CRADA Number CRD-08-320

Development of ZnTe:Cu Contacts for CdTe Solar Cells: Cooperative Research and Development Final Report, CRADA Number CRD-08-320 PDF Author:
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ISBN:
Category :
Languages : en
Pages : 0

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The main focus of the work at NREL was on the development of Cu-doped ZnTe contacts to CdTe solar cells in the substrate configuration. The work performed under the CRADA utilized the substrate device structure used at NREL previously. All fabrication was performed at NREL. We worked on the development of Cu-doped ZnTe as well as variety of other contacts such as Sb-doped ZnTe, CuxTe, and MoSe2.We were able to optimize the contacts to improve device parameters. The improvement was obtained primarily through increasing the open-circuit voltage, to values as high as 760 mV, leading to device efficiencies of 7%.