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Template Engineering of CuBi2O4 Single‐Crystal Thin Film Photocathodes -  Lee - 2020 - Small - Wiley Online Library
Template Engineering of CuBi2O4 Single‐Crystal Thin Film Photocathodes - Lee - 2020 - Small - Wiley Online Library

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

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

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

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

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

Probing the electronic and geometric structures of photoactive  electrodeposited Cu2O films by X-ray absorption spectroscopy - ScienceDirect
Probing the electronic and geometric structures of photoactive electrodeposited Cu2O films by X-ray absorption spectroscopy - ScienceDirect

Cu:NiO as a hole-selective back contact to improve the photoelectrochemical  performance of CuBi 2 O 4 thin film photocathodes - Journal of Materials  Chemistry A (RSC Publishing) DOI:10.1039/C9TA01489F
Cu:NiO as a hole-selective back contact to improve the photoelectrochemical performance of CuBi 2 O 4 thin film photocathodes - Journal of Materials Chemistry A (RSC Publishing) DOI:10.1039/C9TA01489F

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

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)

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

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

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) Investigation of Cu2SnSe3 preparation by simultaneous  electrodeposition as precursor of Cu2ZnSnSe4 thin film solar cell
PDF) Investigation of Cu2SnSe3 preparation by simultaneous electrodeposition as precursor of Cu2ZnSnSe4 thin film solar cell

PDF superior A diez años de la guerra de los seis días - 1Library.Co
PDF superior A diez años de la guerra de los seis días - 1Library.Co

Supplementary Information Gradient self-doped CuBi2O4 with highly improved  charge separation efficiency
Supplementary Information Gradient self-doped CuBi2O4 with highly improved charge separation efficiency

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

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

Septiņas māsas: Vētru māsa
Septiņas māsas: Vētru māsa

PDF) Electrodeposition of Thin Films for Low-cost Solar Cells
PDF) Electrodeposition of Thin Films for Low-cost Solar Cells

Optimization of charge behavior in nanoporous CuBi2O4 photocathode for  photoelectrochemical reduction of CO2 - ScienceDirect
Optimization of charge behavior in nanoporous CuBi2O4 photocathode for photoelectrochemical reduction of CO2 - ScienceDirect

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

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

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