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Hydrocarbon compound (C22H14) made of 5 fused benzene rings
Pentacene (C22H14) is a polycyclic aromatic hydrocarbon consisting of five linearly-fused benzene (C6H6) rings. This highly conjugated compound is an
Pentacene
Scientific misconduct scandal
Schön: J. H. Schön; S. Berg; Ch. Kloc; B. Batlogg (2000). "Ambipolar Pentacene Field-Effect Transistors and Inverters". Science. 287 (5455): 1022–3.
Schön_scandal
Type of field-effect transistor
problem with pentacene, as well as many other organic conductors, is its rapid oxidation in air to form pentacene-quinone. However if the pentacene is preoxidized
Organic field-effect transistor
Organic_field-effect_transistor
Electrically neutral group of two or more atoms
Lipton-Duffin, J.; Gatti, R.; Ma, D.; Perepichka, D.F.; Rosei, F. (2015). "Pentacene on Ni(111): Room-temperature molecular packing and temperature-activated
Molecule
Molecular photophysics selection rule
effects in tetracene fluorescence solidified its role in polyacenes. Pentacene and tetracene, where the singlet state energy (S1) is at least twice the
Singlet_fission
Device for producing coherent EM waves in the sub-visible spectrum
solid-state maser that operated at room temperature by using optically pumped, pentacene-doped p-Terphenyl as the amplifier medium. It produced pulses of maser
Maser
Electrical resistance attributed to contacting interfaces
Christopher R.; Frisbie, C. Daniel (2004). "Gated four-probe measurements on pentacene thin-film transistors: Contact resistance as a function of gate voltage
Contact_resistance
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Styrene
Hydrocarbon compound (C6H6)
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Benzene
Type of electric circuits
utilized as a combination substrate and gate dielectric for use with pentacene-based active layers. This idea was expanded upon to create complete circuits
Biodegradable_electronics
Organic compounds with the formula (CH3)2C6H4
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Xylene
Compound containing rings with delocalized pi electrons
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Aromatic_compound
Organic compound consisting entirely of hydrogen and carbon
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Hydrocarbon
Class of chemical compounds
and are actively researched in chemistry and electrical engineering. Pentacene has been incorporated into organic field-effect transistors, reaching
Acene
Chemical compound
semiconductor, which is made by fluorination of the p-type semiconductor pentacene. It has a blueish-black color, and is used for molecular thin-film devices
Perfluoropentacene
Type of semiconductor
tris(8-hydroxyquinolinato)aluminium, C60, phenyl-C61-butyric acid methyl ester (PCBM), pentacene, carbazoles, and phthalocyanine. Molecularly doped polymers are prepared
Organic_semiconductor
Hydrocarbon compound made of a 5-carbon chain with two single and two double bonds
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Pentadiene
Connection between brain and computer
Flexible electronics are polymers or other flexible materials (e.g. silk, pentacene, PDMS, Parylene, polyimide) printed with circuitry; the flexibility allows
Brain–computer_interface
Technique in quantum optics
isolation of single molecules in the end of the 1980s. Subsequently, single pentacene molecules were detected in p-terphenyl crystals. The single molecules
Single-photon_source
Field of materials science
material is Pentacene. Due to its low solubility in most organic solvents, it's difficult to fabricate thin film transistors (TFTs) from pentacene itself using
Organic_electronics
Hydrocarbon composed of multiple aromatic rings
variations that are possible. Acenes Naphthalene Anthracene Tetracene Pentacene Phenacenes Phenanthrene Chrysene Picene Catacondensed benzenoid hydrocarbons
Polycyclic aromatic hydrocarbon
Polycyclic_aromatic_hydrocarbon
Type of field-effect transistor
neuron. The device uses gold nano-particles of about 5—20 nm set with pentacene to emulate the change in voltages and speed within the signal. This device
NOMFET
Petrochemical process to break down saturated hydrocarbons in smaller molecules
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Steam_cracking
Boron containing acene compounds
or two more flanking benzene rings to synthesize the naphthacene and pentacene boron analogues respectively. The stannacycle used to prepare 9-boraanthracene
Boraacenes
Aromatic hydrocarbon
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Toluene
Chemical reaction
to obtain anthracene through dehydration. Larger aromatic systems like pentacene are also feasible. This reaction does not take place in a single step
Elbs_reaction
Chemical compound
cross-linked PVP can be used in this application, often in combination with pentacene. By varying the dielectric properties of PVP, the field-effect mobility
Poly(4-vinylphenol)
Type of saturated hydrocarbon compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Alkane
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Spiropentadiene
Group of chemical compounds
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Tetramethylbenzene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
2,2,4-Trimethylpentane
Chemical compound
this gap is significantly smaller than that of smaller acenes such as pentacene (five rings) or tetracene (four rings), positioning it as a potential
Nonacene
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Diisobutene
Chemical compound
structural isomer of the more common pentacene, from which it differs by the arrangement of its rings. While pentacene has a linear acene structure, pentaphene
Pentaphene
Unsaturated hydrocarbon compound (H2C=C(CH3)2)
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Isobutylene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
4-Vinyltoluene
Covalent compound that contains two double bonds
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Diene
Organic compounds with the empirical formula CH3C6H4CH2CH3
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Ethyltoluene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Cyclopropyne
Index of chemical compounds with the same molecular formula
278.36 g/mol) may refer to: Dibenz[a,h]anthracene Dibenz[a,j]anthracene Pentacene Pentaphene Picene This set index page lists chemical structure articles
C22H14
Group of isomeric chemical compounds
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Trimethylbenzene
Hydrocarbon compound containing one or more C≡C bonds
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Alkyne
Concept in quantum electronics
Double-exciton generation has additionally been observed in organic pentacene derivatives through singlet exciton fission with extremely high quantum
Multiple_exciton_generation
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Cymene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Prismane
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Azulene
Saturated alicyclic hydrocarbon
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Cycloalkane
Organic compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Cumene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Trans-Propenylbenzene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Cyclobutyne
Hydrocarbon compound; precursor to styrene and polystyrene
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Ethylbenzene
Group of chemical compounds
interest, pentacene has been widely used as an active layer in organic thin-film field-effect transistors (OFET). The main drawback of pentacene OFET is
Phenacene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Butadiene
Irish physicist
Jenny; Kim, Ji-Seon (2014). "Charge mobility anisotropy of functionalized pentacenes in organic field effect transistors fabricated by solution processing"
Jenny_Nelson
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Naphthalene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Cyclohexyne
Index of articles associated with the same name
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
C2-Benzenes
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
1,5-Hexadiene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
N-Propylbenzene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Cycloheptyne
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Mesitylene
Polycyclic aromatic hydrocarbon composed of three fused benzene rings
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Phenanthrene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Methylcyclobutane
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
P-Xylene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Tetracene
Organic compound, C6H4(CH=CH2)2
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Divinylbenzene
Chemical compound
aromatic ring fusions, a series termed acenes; the previous in the series is pentacene (with five fused rings) and the next is heptacene (with seven). It and
Hexacene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
P-Cymene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Phenylacetylene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
O-Xylene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Spiropentane
Family of organic compounds
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Alkylbenzene
Organic compound (H2C=C=CH2)
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Propadiene
Tykwinski and others explored pentacene dimers in an organic solution to increase the triplet yield, which is usually 16% for pentacene to 156%. His 2019 study
Dirk_M._Guldi
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
1,2,4-Trimethylbenzene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Anthracene
Phys. Rev. Lett. 62, 2535 - 2538 (1989) M. Orrit and J. Bernard, Single pentacene molecules detected by fluorescence excitation in a p-terphenyl crystal
Single-molecule_experiment
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
2-Methylpentane
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Hexamethylbenzene
Hydrocarbon compound containing one or more C=C bonds
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Alkene
single crystal using optically excited triplet states of fully deuterated pentacene guest molecules. at temperatures around 100 K and magnetic field of 0
Polarized_target
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
4-Ethyltoluene
Hydrocarbon compound with 3 or more consecutive double bonds
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Cumulene
Synthetic plant growth regulator
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
1-Methylcyclopropene
Chemical compound
Rominger, Frank; Freudenberg, Jan; Bunz, Uwe H. F. (February 2024). "Pentacene to Octacene: The Limit of Fourfold TIPS-Ethynylation". Organic Materials
Octacene
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Methylcyclopropane
Organic compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Tert-Butylbenzene
Chemical compound
product that can be reacted further with p-toluenesulfonic acid to give a pentacene derivative in 49% yield. W. Friedrichsen (1980), "Benzo[c]furans", Adv
1,3-Diphenylisobenzofuran
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
2-Methylhexane
Hydrocarbon ring molecule containing a C≡C bond
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Cycloalkyne
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
M-Xylene
Organic compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
O-Cymene
American chemist (born 1953)
3275-3277. Conrad, B.R.; Cullen, W.G.; Riddick, B.C.; Williams, E.D. (2009). "Pentacene islands grown on ultra-thin SiO2". Surface Science. 603 (3): L27–L30.
Ellen_D._Williams_(scientist)
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Pentamethylbenzene
Professor of Functional Molecular Materials
demonstrated that the molecular orientation of pentacene within a solar cell could increase the power output. Pentacene packs in a herringbone structure and each
Sandrine_Heutz
British physicist and academic
Ricardo Ruiz; Devashish Choudhary; Bert Nickel; et al. (November 2004). "Pentacene Thin Film Growth". Chemistry of Materials. 16 (23): 4497–4508. doi:10
Paulette_Clancy
Ukrainian–American physical chemist (born 1970)
“Non-adiabatic dynamics of charge transfer and singlet fission at the pentacene/C60 interface”, J. Am. Chem. Soc., 136, 1599 (2014) H. Zhu, Y. Yang, K
Oleg_Prezhdo
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Cyclooctyne
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
2-Methyloctane
Chemical compound
Enyne Aromatic hydrocarbons PAHs Acenes Naphthalene Anthracene Tetracene Pentacene Hexacene Heptacene Octacene Nonacene Other Azulene Fluorene Helicenes
Isobutylbenzene
PENTACENE
PENTACENE
PENTACENE
PENTACENE
Boy/Male
Hindu
Lord Krishna, Beloved of Radha
Girl/Female
Arabic, Indian, Turkish
Joyful; Happiness
Girl/Female
Australian, British, Danish, English, French, Hebrew
Bitterness
Surname or Lastname
English
English : unexplained.
Boy/Male
Afghan, African, American, Arabic, Danish, Hindu, Indian, Lebanese, Muslim, Sindhi, Swahili, Tamil
Praiseworthy; Greatly Praised; Name of the Last Prophet; Praised One
Boy/Male
Celebrity, Hindu, Indian, Punjabi, Sikh, Traditional
Lord of Dharma and Righteousness; Lord of Religion
Boy/Male
English
King of Babilon
Boy/Male
Greek Polish
Lordly.
Girl/Female
Gujarati, Hindu, Indian, Kannada, Tamil
Treasonable Women
Female
French
French form of Latin Tatiana, probably TATIENNE means "father."
PENTACENE
PENTACENE
PENTACENE
PENTACENE
PENTACENE