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References
162
Referenced
385
10.1039/C6SE00094K
/ Sustain. Energy Fuels / The rise of lithium–selenium batteries by Eftekhari (2017)10.1021/nl400258t
/ Nano Lett. / Synthesis of MoS2 and MoSe2 films with vertically aligned layers by Kong (2013)10.1002/anie.201303147
/ Angew. Chem., Int. Ed. / An advanced selenium–carbon cathode for rechargeable lithium–selenium batteries by Yang (2013)10.1021/jz502405h
/ J. Phys. Chem. Lett. / Elemental selenium for electrochemical energy storage by Yang (2015)10.1149/1.2131625
/ J. Electrochem. Soc. / Hole reactions from D-energy bands of layer type group VI transition metal dichalcogenides: new perspectives for electrochemical solar energy conversion by Tributsch (1978)10.1016/S0927-0248(01)00116-7
/ Sol. Energy Mater. Sol. Cells / Improved photoconversion from MoSe2 based PEC solar cells by Pathak (2002)10.1016/0022-0728(92)80396-L
/ J. Electroanal. Chem. / Electrochemical and photoelectrochemical reduction of oxygen at semiconductor electrodes in molten amides by Sampath (1992)10.1016/0378-7753(82)80016-5
/ J. Power Sources / Photocatalytic behaviour of N-MoSe2 single crystals in contact with the I−, I2 redox couple in solar photo-electrochemical cells by Razzini (1982)10.1016/0013-4686(81)85162-6
/ Electrochim. Acta / The photoelectrochemistry of the aqueous iodide/iodine redox system at N-type MoSe2-electrodes by Kautek (1981)10.1002/anie.201200564
/ Angew. Chem., Int. Ed. / Definitive evidence for fast electron transfer at pristine basal plane graphite from high-resolution electrochemical imaging by Lai (2012)10.1002/anie.200462750
/ Angew. Chem., Int. Ed. / Nanotrench arrays reveal insight into graphite electrochemistry by Davies (2005)10.1002/pola.23990
/ J. Polym. Sci. Part A: Polym. Chem. / Initiating electropolymerization on graphene sheets in graphite oxide structure by Eftekhari (2010)10.1038/nmat4080
/ Nat. Mater. / Phase-engineered low-resistance contacts for ultrathin MoS2 transistors by Kappera (2014)10.1039/C5CC00803D
/ Chem. Commun. / 2H→1T phase transition and hydrogen evolution activity of MoS2, MoSe2, WS2 and WSe2 strongly depends on the MX2 composition by Ambrosi (2015)10.1039/C5CP06706E
/ Phys. Chem. Chem. Phys. / Controlling phase transition for single-layer MTe2 (M=Mo and W): modulation of the potential barrier under strain by Huang (2016)10.1038/nnano.2014.64
/ Nat. Nanotechnol. / Atomic mechanism of the semiconducting-to-metallic phase transition in single-layered MoS2 by Lin (2014)10.1016/j.jpcs.2006.05.058
/ J. Phys. Chem. Solids / X-ray diffraction study of molybdenum disulfide to 38.8GPa by Aksoy (2006)10.1021/jp410167k
/ J. Phys. Chem. C / Effect of pressure and temperature on structural stability of MoS2 by Bandaru (2014)10.1103/PhysRevB.87.144105
/ Phys. Rev. B / Structure change, layer sliding, and metallization in high-pressure MoS2 by Hromadová (2013)10.1038/ncomms8312
/ Nat. Commun. / Pressure induced metallization with absence of structural transition in layered molybdenum diselenide by Zhao (2015)10.1063/1.4916089
/ Appl. Phys. Lett. / Polarization and time-resolved photoluminescence spectroscopy of excitons in MoSe2 monolayers by Wang (2015)10.1103/PhysRevLett.113.266804
/ Phys. Rev. Lett. / Valley splitting and polarization by the Zeeman effect in monolayer by Li (2014)10.1103/PhysRevLett.114.037401
/ Phys. Rev. Lett. / Breaking of valley degeneracy by magnetic field in monolayer by MacNeill (2015)10.1021/nn501175k
/ ACS Nano / Chemical vapor deposition growth of crystalline monolayer MoSe2 by Wang (2014)10.1039/C5NR02515J
/ Nanoscale / CVD synthesis of Mo(1−x)WxS2 and MoS2(1−x)Se2x alloy monolayers aimed at tuning the bandgap of molybdenum disulfide by Zhang (2015)10.1039/C4NR02311K
/ Nanoscale / CVD synthesis of large-area, highly crystalline MoSe2 atomic layers on diverse substrates and application to photodetectors by Xia (2014)10.1021/nn503287m
/ ACS Nano / Monolayer MoSe2 grown by chemical vapor deposition for fast photodetection by Chang (2014)10.1039/C4CS00256C
/ Chem. Soc. Rev. / Recent advances in controlled synthesis of two-dimensional transition metal dichalcogenides via vapour deposition techniques by Shi (2015)10.1002/adma.19950071203
/ Adv. Mater. / Doped and heteroatom-containing fullerene-like structures and nanotubes by Tenne (1995)10.1002/adma.201304389
/ Adv. Mater. / 2-dimensional transition metal dichalcogenides with tunable direct band gaps: MoS2(1−x)Se2x monolayers by Mann (2014)10.1038/srep15313
/ Sci. Rep. / Highly crystalline CVD-grown multilayer MoSe2 thin film transistor for fast photodetector by Jung (2015)10.1016/j.jcrysgro.2016.06.009
/ J. Cryst. Growth / Rapid synthesis of transition metal dichalcogenide few-layer thin crystals by the microwave-induced-plasma assisted method by Chaturvedi (2016)10.1016/S1387-7003(02)00685-8
/ Inorg. Chem. Commun. / Synthesis of nanocrystalline MoSe2 by sonochemical reaction of Se with Mo(CO)6 by Kristl (2003)10.1007/s10853-008-2462-z
/ J. Mater. Sci. / Combining MoS2 or MoSe2 nanoflakes with carbon by reacting Mo(CO)6 with S or Se under their autogenic pressure at elevated temperature by Pol (2008)10.1039/b303740a
/ J. Mater. Chem. / Microwave-assisted synthesis of nanosized MoSe2 by Harpeness (2003)10.1021/cm0002517
/ Chem. Mater. / Synthesis and characterization of MoSe2 and WSe2 nanoclusters by Huang (2000)10.1016/j.matlet.2008.04.018
/ Mater. Lett. / Synthesis of MoSe2 nano-flakes modified with dithiophosphinic acid extractant at low temperature by Shi (2008)10.1016/j.solidstatesciences.2015.06.014
/ Solid State Sci. / Hexagonal nanosized molybdenum diselenide thin film deposited at 333K by chemical method by Sathe (2015)10.1021/cm000517+
/ Chem. Mater. / Low-temperature hydrothermal synthesis of transition metal dichalcogenides by Chen (2001)10.1016/S0025-5408(99)00048-3
/ Mater. Res. Bull. / Synthesis of MoSe2 nanocrystallites by a solvothermal conversion from MoO3 by Zhan (1999)10.1039/C3RA42564A
/ RSC Adv. / Synthesis of MoSe2 flower-like nanostructures and their photo-responsive properties by Fan (2014)10.1016/j.apsusc.2016.04.086
/ Appl. Surf. Sci. / Hydrothermal synthesis of 3D hierarchical flower-like MoSe2 microspheres and their adsorption performances for methyl orange by Tang (2016)10.1039/C5NR06527E
/ Nanoscale / Novel MoSe2 hierarchical microspheres for applications in visible-light-driven advanced oxidation processes by Dai (2015)10.1039/C4NR02716G
/ Nanoscale / Fast colloidal synthesis of scalable Mo-rich hierarchical ultrathin MoSe2−x nanosheets for high-performance hydrogen evolution by Zhou (2014)10.1002/smll.201503834
/ Small / Surface tension components based selection of cosolvents for efficient liquid phase exfoliation of 2D materials by Shen (2016)10.1016/j.elecom.2014.10.018
/ Electrochem. Commun. / Exfoliated transition metal dichalcogenides (MoS2, MoSe2, WS2, WSe2): an electrochemical impedance spectroscopic investigation by Loo (2015)10.1002/adfm.201202144
/ Adv. Funct. Mater. / Highly ordered mesoporous crystalline MoSe2 material with efficient visible-light-driven photocatalytic activity and enhanced lithium storage performance by Shi (2013)10.1039/C5RA19799F
/ RSC Adv. / Mesoporous transition metal dichalcogenide ME2 (M=Mo, W; E=S, Se) with 2-D layered crystallinity as anode materials for lithium ion batteries by Lee (2016)10.1016/S0042-207X(00)00225-6
/ Vacuum / Preparation of layered semiconductor (MoSe2) by electrosynthesis by Anand (2001)10.1016/j.materresbull.2004.09.008
/ Mater. Res. Bull. / Pulsed electrodeposition and characterization of molybdenum diselenide thin film by Delphine (2005)10.1007/s10008-003-0457-x
/ J. Solid State Electrochem. / Electrodeposition of Mo–Se thin films from a sulfamatic electrolyte by Dukstiene (2004)10.1103/PhysRevLett.116.127402
/ Phys. Rev. Lett. / Optical coherence in atomic-monolayer transition-metal dichalcogenides limited by electron–phonon interactions by Dey (2016)10.1038/nnano.2013.277
/ Nat. Nanotechnol. / Direct observation of the transition from indirect to direct bandgap in atomically thin epitaxial MoSe2 by Zhang (2013)10.1002/adma.201504789
/ Adv. Mater. / High-mobility transistors based on large-area and highly crystalline CVD-grown MoSe2 films on insulating substrates by Rhyee (2016)10.1002/aelm.201500215
/ Adv. Electron. Mater. / An optoelectronic switch based on intrinsic dual Schottky diodes in ambipolar MoSe2 field-effect transistors by Pradhan (2015)10.1007/s00340-015-6058-4
/ Appl. Phys. B / First principle defect study of MoSe2 field effect transistor by Ghosh (2015)10.1063/1.4913714
/ Appl. Phys. Lett. / Low-frequency noise in MoSe2 field effect transistors by Das (2015)10.1016/j.matchemphys.2015.08.036
/ Mater. Chem. Phys. / Novel electronic properties in silicene on MoSe2 monolayer: an excellent prediction for FET by Li (2015)10.1039/C4RA17320A
/ RSC Adv. / Atomistic insight into the oxidation of monolayer transition metal dichalcogenides: from structures to electronic properties by Liu (2015)10.1038/ncomms8311
/ Nat. Commun. / Atomically thin resonant tunnel diodes built from synthetic van der Waals heterostructures by Lin (2015)10.1002/adma.201502278
/ Adv. Mater. / A van der Waals homojunction: ideal p–n diode behavior in MoSe2 by Jin (2015)10.1039/C4TC01794C
/ J. Mater. Chem. C / Engineering electronic properties of metal–MoSe2 interfaces using self-assembled monolayers by Çakir (2014)10.1038/srep31122
/ Sci. Rep. / Stacking orders induced direct band gap in bilayer MoSe2–WSe2 lateral heterostructures by Hu (2016)10.1021/acsami.5b09743
/ ACS Appl. Mater. Interfaces / Epitaxial 2D MoSe2 (HfSe2) semiconductor/2D TaSe2 metal van der Waals heterostructures by Tsoutsou (2016)10.1021/acs.jpcc.5b11677
/ J. Phys. Chem. C / Potential application of metal dichalcogenides double-layered heterostructures as anode materials for Li-ion batteries by Wang (2016)10.1063/1.4931621
/ Appl. Phys. Lett. / A WSe2/MoSe2 heterostructure photovoltaic device by Flöry (2015)10.1063/1.4941755
/ Appl. Phys. Lett. / Materials properties of out-of-plane heterostructures of MoS2–WSe2 and WS2–MoSe2 by Amin (2016)10.1063/1.4917422
/ Appl. Phys. Lett. / Two-dimensional semiconductor HfSe2 and MoSe2/HfSe2 van der Waals heterostructures by molecular beam epitaxy by Aretouli (2015)10.1021/acs.nanolett.5b02423
/ Nano Lett. / Two-step growth of two-dimensional WSe2/MoSe2 heterostructures by Gong (2015)10.1016/j.mee.2015.04.113
/ Microelectron. Eng. / Epitaxial ZrSe2/MoSe2 semiconductor V.d. Waals heterostructures on wide band gap AlN substrates by Tsipas (2015)10.1021/acs.nanolett.6b00801
/ Nano Lett. / Evidence for fast interlayer energy transfer in MoSe2/WS2 heterostructures by Kozawa (2016)10.1039/C5NR04723D
/ Nanoscale / Probing charge transfer excitons in a MoSe2–WS2 van der Waals heterostructure by Ceballos (2015)10.1039/C4NR06874B
/ Nanoscale / High-quality, large-area MoSe2 and MoSe2/Bi2Se3 heterostructures on AlN(0001)/Si(111) substrates by molecular beam epitaxy by Xenogiannopoulou (2015)10.1038/ncomms8749
/ Nat. Commun. / Patterned arrays of lateral heterojunctions within monolayer two-dimensional semiconductors by Mahjouri-Samani (2015)10.1021/acs.nanolett.6b00932
/ Nano Lett. / Strain-induced electronic structure changes in stacked van der Waals heterostructures by He (2016)10.1016/j.snb.2015.11.070
/ Sens. Actuators B / Layered molybdenum selenide stacking flower-like nanostructure coupled with guanine-rich DNA sequence for ultrasensitive ochratoxin a Aptasensor application by Huang (2016)10.1038/nnano.2014.222
/ Nat. Nanotechnol. / Lateral epitaxial growth of two-dimensional layered semiconductor heterojunctions by Duan (2014)10.1021/jp410044v
/ J. Phys. Chem. C / Curly graphene with specious interlayers displaying superior capacity for hydrogen storage by Eftekhari (2013)10.1039/C5RA27871F
/ RSC Adv. / Bandgap engineering of MoS2/MX2 (MX2=WS2, MoSe2 and WSe2) heterobilayers subjected to biaxial strain and normal compressive strain by Su (2016)10.1039/C5CP04760A
/ Phys. Chem. Chem. Phys. / Activating and tuning basal planes of MoO2, MoS2, and MoSe2 for hydrogen evolution reaction by Lin (2015)10.1039/C5CP06483J
/ Phys. Chem. Chem. Phys. / Ultra-thin and porous MoSe2 nanosheets: facile preparation and enhanced electrocatalytic activity towards the hydrogen evolution reaction by Lei (2016)10.1039/C4TA00458B
/ J. Mater. Chem. A / Ultrathin S-doped MoSe2 nanosheets for efficient hydrogen evolution by Xu (2014)10.1002/smll.201501360
/ Small / In situ carbon-doped Mo(Se0.85S0.15)2 hierarchical nanotubes as stable anodes for high-performance sodium-ion batteries by Shi (2015)10.1021/cs501970w
/ ACS Catal. / Ultrathin MoS2(1−x)Se2x alloy nanoflakes for electrocatalytic hydrogen evolution reaction by Gong (2015)10.1039/C5RA16853H
/ RSC Adv. / Understanding the formation mechanism and the 3D structure of Mo(SxSe1−x)2 nanoflowers by Meiron (2015)10.1039/C5NR02652K
/ Nanoscale / Large-area synthesis of monolayered MoS2(1−x)Se2x with a tunable band gap and its enhanced electrochemical catalytic activity by Yang (2015)10.1039/C4NR03716B
/ Nanoscale / Active guests in the MoS2/MoSe2 host lattice: efficient hydrogen evolution using few-layer alloys of MoS2(1−x)Se2x by Kiran (2014)10.1021/cs500412u
/ ACS Catal. / Operando synthesis of macroporous molybdenum diselenide films for electrocatalysis of the hydrogen-evolution reaction by Saadi (2014)10.1088/0957-4484/25/36/365202
/ Nanotechnology / High photosensitivity few-layered MoSe2 back-gated field-effect phototransistors by Abderrahmane (2014)10.1038/srep04063
/ Sci. Rep. / Few-layer MoSe2 possessing high catalytic activity towards iodide/tri-iodide redox shuttles by Lee (2014)10.1039/C3CC49600G
/ Chem. Commun. / In situ growth of a MoSe2/Mo counter electrode for high efficiency dye-sensitized solar cells by Chen (2014)10.1039/C5NR01909E
/ Nanoscale / Porous hollow carbon spheres decorated with molybdenum diselenide nanosheets as anodes for highly reversible lithium and sodium storage by Yang (2015)10.1016/j.electacta.2016.01.114
/ Electrochim. Acta / A study of the charge storage properties of a MoSe2 nanoplatelets/SWCNTs electrode in a Li-ion based electrolyte by Mendoza-Sanchez (2016)10.1039/C5RA27634A
/ RSC Adv. / Two-dimensional graphene-like MoSe2 nanosheets anchored on hollow carbon nanofibers as a cathode catalyst for rechargeable Li–O2 batteries by Lai (2016)10.1016/j.jpowsour.2015.03.120
/ J. Power Sources / Ultrathin few-layered molybdenum selenide/graphene hybrid with superior electrochemical Li-storage performance by Ma (2015)10.1039/C5RA24852C
/ RSC Adv. / MoSe2 nanosheets grown on carbon cloth with superior electrochemical performance as flexible electrode for sodium ion batteries by Zhang (2016)10.1039/C5TA02100F
/ J. Mater. Chem. A / Sheet-like MoSe2/C composites with enhanced Li-ion storage properties by Liu (2015)10.1016/j.electacta.2016.06.086
/ Electrochim. Acta / MoSe2 nanosheet/poly(3,4-ethylenedioxythiophene): poly(styrenesulfonate) composite film as a Pt-free counter electrode for dye-sensitized solar cells by Huang (2016)10.1021/acsnano.5b00501
/ ACS Nano / Catalytic and charge transfer properties of transition metal dichalcogenides arising from electrochemical pretreatment by Chia (2015)10.1002/adfm.201300125
/ Adv. Funct. Mater. / Two-dimensional molybdenum trioxide and dichalcogenides by Balendhran (2013)10.1016/j.jpowsour.2015.02.096
/ J. Power Sources / Sodium storage and transport properties in pyrolysis synthesized MoSe2 nanoplates for high performance sodium-ion batteries by Wang (2015)10.1016/0378-7753(85)88034-4
/ J. Power Sources / Cycling behaviour of molybdenum dichalcogenides in aprotic organic electrolyte solution by Ilić (1985)10.1016/0167-2738(95)00234-0
/ Solid State Ionics / Electrochemical studies of lithium and sodium intercalation in MoSe2 by Morales (1996)10.1139/p83-013
/ Can. J. Phys. / Structural destabilization induced by lithium intercalation in MoS2 and related compounds by Py (1983)10.1016/j.jallcom.2016.06.052
/ J. Alloys Compd. / Rational design of coaxial-cable MoSe2/C: towards high performance electrode materials for lithium-ion and sodium-ion batteries by Yang (2016)10.1016/j.electacta.2015.06.138
/ Electrochim. Acta / 3D nanostructured molybdenum diselenide/graphene foam as anodes for long-cycle life lithium-ion batteries by Yao (2015)10.1039/C6RA01579D
/ RSC Adv. / Rational design and preparation of few-layered MoSe2 nanosheet@C/TiO2 nanobelt heterostructures with superior lithium storage performance by Wu (2016)10.1039/C4TA05249H
/ J. Mater. Chem. A / Glucose-assisted synthesis of the hierarchical TiO2 nanowire@MoS2 nanosheet nanocomposite and its synergistic lithium storage performance by Li (2015)10.1007/s12274-016-1056-3
/ Nano Res. / Facile fabrication of integrated three-dimensional C-MoSe2/reduced graphene oxide composite with enhanced performance for sodium storage by Xie (2016)10.1016/j.jallcom.2015.04.120
/ J. Alloys Compd. / Controlled formation of MoSe2 by MoNx thin film as a diffusion barrier against Se during selenization annealing for CIGS solar cell by Jeon (2015)10.1016/j.jpowsour.2015.07.008
/ J. Power Sources / Ultrathin molybdenum diselenide nanosheets anchored on multi-walled carbon nanotubes as anode composites for high performance sodium-ion batteries by Zhang (2015)10.1039/C4NR02538E
/ Nanoscale / Hierarchical MoSe2 yolk–shell microspheres with superior Na-ion storage properties by Ko (2014)10.1039/C5NR07733H
/ Nanoscale / Fullerene-like MoSe2 nanoparticles-embedded CNT balls with excellent structural stability for highly reversible sodium-ion storage by Choi (2016)10.1016/j.electacta.2015.09.016
/ Electrochim. Acta / Preparation of porous layered molybdenum selenide-graphene composites on Ni foam for high-performance supercapacitor and electrochemical sensing by Huang (2015)10.1016/j.cej.2016.05.074
/ Chem. Eng. J. / Net-like molybdenum selenide–acetylene black supported on Ni foam for high-performance supercapacitor electrodes and hydrogen evolution reaction by Liu (2016){'key': '10.1016/j.apmt.2017.01.006_bib1390', 'first-page': '244', 'article-title': 'Preparation of layered MoSe2 nanosheets on Ni-foam substrate with enhanced supercapacitor performance', 'volume': '2015', 'author': 'Huang', 'year': '2015', 'journal-title': 'Mater. Lett.'}
/ Mater. Lett. / Preparation of layered MoSe2 nanosheets on Ni-foam substrate with enhanced supercapacitor performance by Huang (2015)10.1016/j.electacta.2016.03.190
/ Electrochim. Acta / Comparison of two-dimensional transition metal dichalcogenides for electrochemical supercapacitors by Bissett (2016)10.1016/j.elecom.2015.03.017
/ Electrochem. Commun. / Transition metal dichalcogenides (MoS2, MoSe2, WS2 and WSe2) exfoliation technique has strong influence upon their capacitance by Mayorga-Martinez (2015)10.1039/C4CP01237B
/ Phys. Chem. Chem. Phys. / Active edge sites in MoSe2 and WSe2 catalysts for the hydrogen evolution reaction: a density functional study by Tsai (2014)10.1039/C3TA13584E
/ J. Mater. Chem. A / MoSe2 nanosheets and their graphene hybrids: synthesis, characterization and hydrogen evolution reaction studies by Tang (2014)10.1021/nl401944f
/ Nano Lett. / MoSe2 and WSe2 nanofilms with vertically aligned molecular layers on curved and rough surfaces by Wang (2013)10.1038/srep22516
/ Sci. Rep. / 3D binder-free MoSe2 nanosheets/carbon cloth electrodes for efficient and stable hydrogen evolution prepared by simple electrophoresis deposition strategy by Liu (2016)10.1039/C5TA06909B
/ J. Mater. Chem. A / Atomically thin MoSe2/graphene and WSe2/graphene nanosheets for the highly efficient oxygen reduction reaction by Guo (2015)10.1016/j.electacta.2016.09.076
/ Electrochim. Acta / Enhanced catalytic activities of metal-phase-assisted 1T@2H-MoSe2 nanosheets for hydrogen evolution by Zhang (2016)10.1039/C5RA21638A
/ RSC Adv. / One-pot synthesis of nanosheet-assembled hierarchical MoSe2/CoSe2 microcages for the enhanced performance of electrocatalytic hydrogen evolution by Mu (2016)10.1039/C5NR05739F
/ Nanoscale / A CNT@MoSe2 hybrid catalyst for efficient and stable hydrogen evolution by Huang (2015)10.1039/C5TA03704B
/ J. Mater. Chem. A / Perpendicularly oriented few-layer MoSe2 on SnO2 nanotubes for efficient hydrogen evolution reaction by Huang (2015)10.1039/C5NR08553E
/ Nanoscale / Comparison of liquid exfoliated transition metal dichalcogenides reveals MoSe2 to be the most effective hydrogen evolution catalyst by Gholamvand (2016)10.1016/j.tsf.2015.09.024
/ Thin Solid Films / Pulsed laser deposition of nanocomposite MoSex/Mo thin-film catalysts for hydrogen evolution reaction by Grigoriev (2015)10.1002/cctc.201402128
/ ChemCatChem / Molybdenum sulfides and selenides as possible electrocatalysts for CO reduction by Chan (2014)10.1023/B:JACH.0000003868.71691.92
/ J. Appl. Electrochem. / Methanol oxidation at Pt/MoOx/MoSe2 thin film electrodes prepared with exfoliated MoSe2 by Bolivar (2003)10.1063/1.4774090
/ Appl. Phys. Lett. / Band offsets and heterostructures of two-dimensional semiconductors by Kang (2013)10.1103/PhysRevB.35.6195
/ Phys. Rev. B / Electronic structure of MoSe2, MoS2, and WSe2. I. Band-structure calculations and photoelectron spectroscopy by Coehoorn (1987)10.1103/PhysRevB.35.6203
/ Phys. Rev. B / Electronic structure of MoSe2, MoS2, and WSe2. II. The nature of the optical band gaps by Coehoorn (1987)10.1039/C5NR05748E
/ Nanoscale / CTAB-assisted synthesis of novel ultrathin MoSe2 nanosheets perpendicular to graphene for the adsorption and photodegradation of organic dyes under visible light by Wu (2016)10.1021/nl302584w
/ Nano Lett. / Thermally driven crossover from indirect toward direct bandgap in 2D semiconductors: MoSe2 versus MoS2 by Tongay (2012)10.1103/PhysRevB.89.125427
/ Phys. Rev. B / Exciton–exciton annihilation in MoSe2 monolayers by Kumar (2014)10.1038/srep22296
/ Sci. Rep. / Manipulation of photoluminescence of two-dimensional MoSe2 by gold nanoantennas by Chen (2016)10.1039/C6NR00829A
/ Nanoscale / Resonant surface plasmon–exciton interaction in hybrid MoSe2@Au nanostructures by Abid (2016)10.1039/C5NR08219F
/ Nanoscale / Precise and reversible band gap tuning in single-layer MoSe2 by uniaxial strain by Island (2016)10.1039/c0cc00432d
/ Chem. Commun. / Dye-sensitized solar cells with Pt- and TCO-free counter electrodes by Lee (2010)10.1016/j.matlet.2014.02.080
/ Mater. Lett. / Metal selenide films as the counter electrode in dye-sensitized solar cell by Ji (2014)10.1016/j.solener.2015.09.011
/ Sol. Energy / Cobalt/molybdenum ternary hybrid with hierarchical architecture used as high efficient counter electrode for dye-sensitized solar cells by Dong (2015)10.1039/C5CP04862A
/ Phys. Chem. Chem. Phys. / Transition metal selenides as efficient counter-electrode materials for dye-sensitized solar cells by Guo (2015)10.1016/j.jallcom.2015.07.082
/ J. Alloys Compd. / Counter electrodes from Mo–Se nanosheet alloys for bifacial dye-sensitized solar cells by Yang (2015)10.1038/srep13214
/ Sci. Rep. / Fullerene-structured MoSe2 hollow spheres anchored on highly nitrogen-doped graphene as a conductive catalyst for photovoltaic applications by Bi (2015)10.1016/j.snb.2016.06.154
/ Sens. Actuators B / Study on glutathione's inhibition to dopamine polymerization and its application in dopamine determination in alkaline environment based on silver selenide/molybdenum selenide/glassy carbon electrode by Xia (2016)10.1039/c3cp53310g
/ Phys. Chem. Chem. Phys. / Electrical impact of MoSe2 on CIGS thin-film solar cells by Hsiao (2013)10.1016/j.solmat.2016.06.024
/ Sol. Energy Mater. Sol. Cells / Role of Mo:Na layer on the formation of MoSe2 phase in Cu(In,Ga)Se2 thin film solar cells by Lin (2016)10.1016/j.jallcom.2015.11.194
/ J. Alloys Compd. / Impact of Mo barrier layer on the formation of MoSe2 in Cu(In,Ga)Se2 solar cells by Lin (2016)10.1063/1.4964677
/ J. Chem. Phys. / New insights into the Mo/Cu(In,Ga)Se2 interface in thin film solar cells: formation and properties of the MoSe2 interfacial layer by Klinkert (2016)10.1039/C5NR08166A
/ Nanoscale / Aqueous phase preparation of ultrasmall MoSe2 nanodots for efficient photothermal therapy of cancer cells by Yuwen (2016)10.1016/j.bios.2015.09.026
/ Biosens. Bioelectron. / Ultrasensitive sensing platform for platelet-derived growth factor BB detection based on layered molybdenum selenide–graphene composites and exonuclease III assisted signal amplification by Huang (2016)10.1002/adma.201501086
/ Adv. Mater. / Rapid and nondestructive identification of polytypism and stacking sequences in few-layer molybdenum diselenide by Raman spectroscopy by Lu (2015)10.1039/C6CP00715E
/ Phys. Chem. Chem. Phys. / Pressure evolution of the potential barriers of phase transition of MoS2, MoSe2 and MoTe2 by Fan (2016)10.1002/adfm.201504633
/ Adv. Funct. Mater. / Synthesis of millimeter-scale transition metal dichalcogenides single crystals by Gong (2016)10.1039/C5NR07401K
/ Nanoscale / Large area chemical vapor deposition of monolayer transition metal dichalcogenides and their temperature dependent Raman spectroscopy studies by Pawbake (2016)10.1149/2.0841608jes
/ J. Electrochem. Soc. / High quality MoSe2 nanospheres with superior electrochemical properties for sodium batteries by Wang (2016)10.1016/j.cplett.2015.08.035
/ Chem. Phys. Lett. / Resistive switching memory characteristics of single MoSe2 nanorods by Yan (2015)10.1021/acsami.5b02753
/ ACS Appl. Mater. Interfaces / Ultrathin MoSe2 nanosheets decorated on carbon fiber cloth as binder-free and high-performance electrocatalyst for hydrogen evolution by Qu (2015)10.1002/smll.201401598
/ Small / Perpendicularly oriented MoSe2/graphene nanosheets as advanced electrocatalysts for hydrogen evolution by Mao (2015)10.1039/C5TA05223H
/ J. Mater. Chem. A / Colloidally synthesized MoSe2/graphene hybrid nanostructures as efficient electrocatalysts for hydrogen evolution by Liu (2015)
Dates
Type | When |
---|---|
Created | 8 years, 6 months ago (Jan. 28, 2017, 2:15 a.m.) |
Deposited | 6 years, 11 months ago (Sept. 4, 2018, 3:57 p.m.) |
Indexed | 4 days, 16 hours ago (Aug. 21, 2025, 1:35 p.m.) |
Issued | 7 years, 11 months ago (Sept. 1, 2017) |
Published | 7 years, 11 months ago (Sept. 1, 2017) |
Published Print | 7 years, 11 months ago (Sept. 1, 2017) |
@article{Eftekhari_2017, title={Molybdenum diselenide (MoSe 2 ) for energy storage, catalysis, and optoelectronics}, volume={8}, ISSN={2352-9407}, url={http://dx.doi.org/10.1016/j.apmt.2017.01.006}, DOI={10.1016/j.apmt.2017.01.006}, journal={Applied Materials Today}, publisher={Elsevier BV}, author={Eftekhari, Ali}, year={2017}, month=sep, pages={1–17} }