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PEC
Transition Metal Arsenide Catalysts for the Hydrogen Evolution Reaction
Submitted by
nnguyen2
on Fri, 05/20/2022 - 16:40
Gauthier JA
,
King LA
,
Stults FTucker
,
Flores RA
,
Kibsgaard J
,
Regmi YN
,
Chan K
,
Jaramillo TF
. 2019.
Transition Metal Arsenide Catalysts for the Hydrogen Evolution Reaction
.
The Journal of Physical Chemistry C. 123:24007-24012.
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Stable Unassisted Solar Water Splitting on Semiconductor Photocathodes Protected by Multifunctional GaN Nanostructures
Submitted by
nnguyen2
on Fri, 05/20/2022 - 16:36
Wang Y
,
Schwartz J
,
Gim J
,
Hovden R
,
Mi Z
. 2019.
Stable Unassisted Solar Water Splitting on Semiconductor Photocathodes Protected by Multifunctional GaN Nanostructures
.
ACS Energy Letters. 4:1541-1548.
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Photoelectrochemical water splitting using strain-balanced multiple quantum well photovoltaic cells
Submitted by
nnguyen2
on Fri, 05/20/2022 - 16:32
Steiner MA
,
Barraugh CD
,
Aldridge CW
,
Alvarez IBarraza
,
Friedman DJ
,
Ekins-Daukes NJ
,
Deutsch TG
,
Young JL
. 2019.
Photoelectrochemical water splitting using strain-balanced multiple quantum well photovoltaic cells
.
Sustainable Energy Fuels. 3:2837-2844.
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Long-term stability studies of a semiconductor photoelectrode in three-electrode configuration
Submitted by
nnguyen2
on Fri, 05/20/2022 - 16:22
Vanka S
,
Sun K
,
Zeng G
,
Pham TAnh
,
Toma FMaria
,
Ogitsu T
,
Mi Z
. 2019.
Long-term stability studies of a semiconductor photoelectrode in three-electrode configuration
.
Journal of Materials Chemistry A. 7:27612-27619.
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Interfacial engineering of gallium indium phosphide photoelectrodes for hydrogen evolution with precious metal and non-precious metal based catalysts
Submitted by
nnguyen2
on Fri, 05/20/2022 - 16:18
Britto RJ
,
Young JL
,
Yang Y
,
Steiner MA
,
LaFehr DT
,
Friedman DJ
,
Beard M
,
Deutsch TG
,
Jaramillo TF
. 2019.
Interfacial engineering of gallium indium phosphide photoelectrodes for hydrogen evolution with precious metal and non-precious metal based catalysts
.
Journal of Materials Chemistry A. 7:16821-16832.
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High performance III-V photoelectrodes for solar water splitting via synergistically tailored structure and stoichiometry
Submitted by
nnguyen2
on Fri, 05/20/2022 - 16:15
Lim H
,
Young JL
,
Geisz JF
,
Friedman DJ
,
Deutsch TG
,
Yoon J
. 2019.
High performance III-V photoelectrodes for solar water splitting via synergistically tailored structure and stoichiometry
.
Nature Communications. 10:3388.
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Direct Deposition of Crystalline Ta3N5 Thin Films on FTO for PEC Water Splitting
Submitted by
nnguyen2
on Fri, 05/20/2022 - 15:56
Hajibabaei H
,
Little DJ
,
Pandey A
,
Wang D
,
Mi Z
,
Hamann TW
. 2019.
Direct Deposition of Crystalline Ta3N5 Thin Films on FTO for PEC Water Splitting
.
ACS Applied Materials & Interfaces. 11:15457-15466.
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Water-Stable 1D Hybrid Tin(II) Iodide Emits Broad Light with 36% Photoluminescence Quantum Efficiency
Submitted by
nnguyen2
on Fri, 05/20/2022 - 15:50
Spanopoulos I
,
Hadar I
,
Ke W
,
Guo P
,
Sidhik S
,
Kepenekian M
,
Even J
,
Mohite AD
,
Schaller RD
,
Kanatzidis MG
. 2020.
Water-Stable 1D Hybrid Tin(II) Iodide Emits Broad Light with 36% Photoluminescence Quantum Efficiency
.
Journal of the American Chemical Society. 142:9028-9038.
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Tungsten oxide-coated copper gallium selenide sustains long-term solar hydrogen evolution
Submitted by
nnguyen2
on Fri, 05/20/2022 - 12:16
Palm DW
,
Muzzillo CP
,
Ben-Naim M
,
Khan I
,
Gaillard N
,
Jaramillo TF
. 2020.
Tungsten oxide-coated copper gallium selenide sustains long-term solar hydrogen evolution
.
Sustainable Energy & Fuels. 5
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Mg $\less$sub$\greater$x$\less$/sub$\greater$ Zn$\less$sub$\greater$1-x $\less$/sub$\greater$O contact to CuGa$\less$sub$\greater$3$\less$/sub$\greater$Se$\less$sub$\greater$5$\less$/sub$\greater$ absorber for photovoltaic and photoelectrochemical devices
Submitted by
nnguyen2
on Fri, 05/20/2022 - 12:06
Khan IS
,
Muzzillo CP
,
Perkins CL
,
Norman AG
,
Young JL
,
Gaillard N
,
Zakutayev A
. 2021.
Mg $\less$sub$\greater$x$\less$/sub$\greater$ Zn$\less$sub$\greater$1-x $\less$/sub$\greater$O contact to CuGa$\less$sub$\greater$3$\less$/sub$\greater$Se$\less$sub$\greater$5$\less$/sub$\greater$ absorber for photovoltaic and photoelectrochemical devices
.
Journal of Physics: Energy. 3:024001.
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about Mg $\less$sub$\greater$x$\less$/sub$\greater$ Zn$\less$sub$\greater$1-x $\less$/sub$\greater$O contact to CuGa$\less$sub$\greater$3$\less$/sub$\greater$Se$\less$sub$\greater$5$\less$/sub$\greater$ absorber for photovoltaic and photoelectrochemical devices
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