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Phase pure CuSbS 2 thin films by heat treatment of electrodeposited Sb 2 S  3 /Cu layers | SpringerLink
Phase pure CuSbS 2 thin films by heat treatment of electrodeposited Sb 2 S 3 /Cu layers | SpringerLink

PDF) Stabilized Solar Hydrogen Production with CuO/CdS Heterojunction Thin  Film Photocathodes
PDF) Stabilized Solar Hydrogen Production with CuO/CdS Heterojunction Thin Film Photocathodes

Copper–antimony and copper–bismuth chalcogenides—Research opportunities and  review for solar photovoltaics | MRS Energy & Sustainability | Cambridge  Core
Copper–antimony and copper–bismuth chalcogenides—Research opportunities and review for solar photovoltaics | MRS Energy & Sustainability | Cambridge Core

In situ Al 2 O 3 incorporation enhances the efficiency of CuIn(S,Se) 2  solar cells prepared from molecular-ink solutions - Journal of Materials  Chemistry A (RSC Publishing) DOI:10.1039/D1TA00768H
In situ Al 2 O 3 incorporation enhances the efficiency of CuIn(S,Se) 2 solar cells prepared from molecular-ink solutions - Journal of Materials Chemistry A (RSC Publishing) DOI:10.1039/D1TA00768H

Katalog film Indonesia, 1926-2005 by J.B. Kristanto
Katalog film Indonesia, 1926-2005 by J.B. Kristanto

PDF) Stabilized Solar Hydrogen Production with CuO/CdS Heterojunction Thin  Film Photocathodes
PDF) Stabilized Solar Hydrogen Production with CuO/CdS Heterojunction Thin Film Photocathodes

Cu:NiO as a hole-selective back contact to improve the photoelectrochemical  performance of CuBi2O4 thin film photocathodes - Journal of Materials  Chemistry A (RSC Publishing)
Cu:NiO as a hole-selective back contact to improve the photoelectrochemical performance of CuBi2O4 thin film photocathodes - Journal of Materials Chemistry A (RSC Publishing)

Grain growth enhancing through preheating treatment of a sputtered stacked  metallic precursor for Cu(In, Al)Se2 thin film solar cells application -  ScienceDirect
Grain growth enhancing through preheating treatment of a sputtered stacked metallic precursor for Cu(In, Al)Se2 thin film solar cells application - ScienceDirect

PDF) Selective Production of CuSbS2, Cu3SbS3, and Cu3SbS4 Nanoparticles  using a Hot Injection Protocol
PDF) Selective Production of CuSbS2, Cu3SbS3, and Cu3SbS4 Nanoparticles using a Hot Injection Protocol

0653_m19_qp_62.pdf | Seedling | Carbonate
0653_m19_qp_62.pdf | Seedling | Carbonate

Phase pure CuSbS 2 thin films by heat treatment of electrodeposited Sb 2 S  3 /Cu layers | SpringerLink
Phase pure CuSbS 2 thin films by heat treatment of electrodeposited Sb 2 S 3 /Cu layers | SpringerLink

Raman spectrum of (a) the Cu-Zn-Sn-Se bottom layer and (b) the... |  Download Scientific Diagram
Raman spectrum of (a) the Cu-Zn-Sn-Se bottom layer and (b) the... | Download Scientific Diagram

CuO/NiO x thin film–based photocathodes for photoelectrochemical water  splitting | SpringerLink
CuO/NiO x thin film–based photocathodes for photoelectrochemical water splitting | SpringerLink

Earth-abundant Cu-based metal oxide photocathodes for photoelectrochemical  water splitting - Energy & Environmental Science (RSC Publishing)  DOI:10.1039/D0EE02397C
Earth-abundant Cu-based metal oxide photocathodes for photoelectrochemical water splitting - Energy & Environmental Science (RSC Publishing) DOI:10.1039/D0EE02397C

Raman spectrum of (a) the Cu-Zn-Sn-Se bottom layer and (b) the... |  Download Scientific Diagram
Raman spectrum of (a) the Cu-Zn-Sn-Se bottom layer and (b) the... | Download Scientific Diagram

Hexagonally ordered microbowl arrays decorated with ultrathin CuInS2  nanosheets for enhanced photoelectrochemical performance - ScienceDirect
Hexagonally ordered microbowl arrays decorated with ultrathin CuInS2 nanosheets for enhanced photoelectrochemical performance - ScienceDirect

Controllable Multinary Alloy Electrodeposition for Thin-Film Solar Cell  Fabrication: A Case Study of Kesterite Cu2ZnSnS4 - ScienceDirect
Controllable Multinary Alloy Electrodeposition for Thin-Film Solar Cell Fabrication: A Case Study of Kesterite Cu2ZnSnS4 - ScienceDirect

XRD patterns of (a) the as-deposited film, and those annealed under Ar... |  Download Scientific Diagram
XRD patterns of (a) the as-deposited film, and those annealed under Ar... | Download Scientific Diagram

Substrate temperature effect during the deposition of (Cu/Sn/Cu/Zn) stacked  precursor CZTS thin film deposited by electron-beam evaporation |  SpringerLink
Substrate temperature effect during the deposition of (Cu/Sn/Cu/Zn) stacked precursor CZTS thin film deposited by electron-beam evaporation | SpringerLink

Development of Cu2O thin films under the influence of electrochemical  impedance: Applications in improved photoelectrochemical water reduction -  ScienceDirect
Development of Cu2O thin films under the influence of electrochemical impedance: Applications in improved photoelectrochemical water reduction - ScienceDirect

Cross-sectional and surface SEM images of (a) as-deposited film and... |  Download Scientific Diagram
Cross-sectional and surface SEM images of (a) as-deposited film and... | Download Scientific Diagram

Characteristics of crystalline sputtered LaFeO 3 thin films as  photoelectrochemical water splitting photocathodes - Nanoscale (RSC  Publishing) DOI:10.1039/D0NR01762K
Characteristics of crystalline sputtered LaFeO 3 thin films as photoelectrochemical water splitting photocathodes - Nanoscale (RSC Publishing) DOI:10.1039/D0NR01762K

Thin film chalcogenide photovoltaic materials | EMRS
Thin film chalcogenide photovoltaic materials | EMRS

11.3% efficiency Cu(In,Ga)(S,Se)2 thin film solar cells via drop-on-demand  inkjet printing - Energy & Environmental Science (RSC Publishing)
11.3% efficiency Cu(In,Ga)(S,Se)2 thin film solar cells via drop-on-demand inkjet printing - Energy & Environmental Science (RSC Publishing)

Thin film chalcogenide photovoltaic materials | EMRS
Thin film chalcogenide photovoltaic materials | EMRS