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3-Phenyl-2-propyn-1-ol | CAS:1504-58-1
3-Phenyl-2-propyn-1-ol
  • Name:3-Phenyl-2-propyn-1-ol
  • CAS:1504-58-1
  • Synonyms:3-Phenylpropargyl alcohol
  • Molecular Formula:C9H8O
  • Molecular Weight:132.16
  • EINESC:

Description

Properties

Boiling point 129-130 ºC (10 mmHg)
Flash point 110 ºC
Density 1.06
Refractive index 1.582-1.584

Safety

Symbol(GHS) Xi
Hazard Codes R36/37/38
SDS/MSDS S26;S36

SDS

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Peer-Reviewed Papers
A Solution-Doped Polymer Semiconductor:Insulator Blend for Thermoelectrics.David Kiefer et al.Advanced science (Weinheim, Baden-Wurttemberg, Germany), 4(1), 1600203-1600203 (2017-01-21) Energetics and Escape of Interchain-Delocalized Ion Pairs in Nonpolar Media.John H Burke et al.Advanced materials (Deerfield Beach, Fla.), 31(12), e1806863-e1806863 (2019-01-31) High-efficiency inverted semi-transparent planar perovskite solar cells in substrate configuration.Fu F, et al. Nature Energy, 2(1), 16190-16190 (2017) Band Engineering and Majority Carrier Switching in Isostructural Donor-Acceptor Complexes DPTTA-F X TCNQ Crystals (X = 1, 2, 4).Yingying Liang et al.Advanced science (Weinheim, Baden-Wurttemberg, Germany), 7(3), 1902456-1902456 (2020-02-12) Thermoelectric Properties of Poly (3-hexylthiophene)(P3HT) Doped with 2, 3, 5, 6-Tetrafluoro-7, 7, 8, 8-tetracyanoquinodimethane (F4TCNQ) by Vapor-Phase Infiltration.Lim E, et al. Chemistry of Materials, 30(3), 998-1010 (2018) Charge-transfer crystallites as molecular electrical dopants.Henry Méndez et al.Nature communications, 6, 8560-8560 (2015-10-07) Atomic Observation of Filling Vacancies in Monolayer Transition Metal Sulfides by Chemically Sourced Sulfur Atoms.Shrawan Roy et al.Nano letters, 18(7), 4523-4530 (2018-06-21) Magnetic Properties of Metal⁻Organic Coordination Networks Based on 3d Transition Metal Atoms.María Blanco-Rey et al.Molecules (Basel, Switzerland), 23(4) (2018-04-21) Trap-Filling of ZnO Buffer Layer for Improved Efficiencies of Organic Solar Cells.Mingguang Li et al.Frontiers in chemistry, 8, 399-399 (2020-06-13) Aharonov-Bohm oscillations in a quasi-ballistic three-dimensional topological insulator nanowire.Sungjae Cho et al.Nature communications, 6, 7634-7634 (2015-07-15) Correlation between the static and dynamic responses of organic single-crystal field-effect transistors.Taiki Sawada et al.Nature communications, 11(1), 4839-4839 (2020-09-26) Photoresist Contact Patterning of Quantum Dot Films.Hohyun Keum et al.ACS nano, 12(10), 10024-10031 (2018-09-25) Double doping of conjugated polymers with monomer molecular dopants.David Kiefer et al.Nature materials, 18(2), 149-155 (2019-01-16) A simple method for controllable solution doping of complete polymer field-effect transistorsIngram IDV, et al. Applied Physics Letters, 104(15), 581-581 (2014) The chemical and structural origin of efficient p-type doping in P3HTDuong DT, et al. Organic Electronics, 14(5), 1330-1336 (2013) Optical Dedoping Mechanism for P3HT:F4TCNQ Mixtures.Jack Fuzell et al.The journal of physical chemistry letters, 7(21), 4297-4303 (2016-11-04) Improved thermoelectric performance of organic thin-film elements utilizing a bilayer structure of pentacene and 2, 3, 5, 6-tetrafluoro-7, 7, 8, 8-tetracyanoquinodimethane (F 4-TCNQ). Applied Physics Letters, 96(25) (2010) Enhancing hole transports and generating hole traps by doping organic hole-transport layers with p-type molecules of 2, 3, 5, 6-tetrafluoro-7, 7, 8, 8-tetracyanoquinodimethaneMatsushima T and Adachi C Thin Solid Films, 517(2), 874-877 (2008) Closing the Stability-Performance Gap in Organic Thermoelectrics by Adjusting the Partial to Integer Charge Transfer Ratio.Osnat Zapata-Arteaga et al.Macromolecules, 53(2), 609-620 (2020-02-25) Uniform doping of graphene close to the Dirac point by polymer-assisted assembly of molecular dopants.Hans He et al.Nature communications, 9(1), 3956-3956 (2018-09-29) Organic charge transfer complexes on graphene with ultrahigh near infrared photogain.Muhammad Ahsan Iqbal et al.Nanotechnology, 30(25), 254003-254003 (2019-02-12) Dual-Source Precursor Approach for Highly Efficient Inverted Planar Heterojunction Perovskite Solar CellsLuo D, et al. Advanced Materials, 29(19), 1604758-1604758 (2017) Molecular doping enabled scalable blading of efficient hole-transport-layer-free perovskite solar cells.Wu-Qiang Wu et al.Nature communications, 9(1), 1625-1625 (2018-04-25) Freezing-in orientational disorder induces crossover from thermally-activated to temperature-independent transport in organic semiconductors.K P Goetz et al.Nature communications, 5, 5642-5642 (2014-12-04) Enhanced device lifetime of double-heterojunction nanorod light-emitting diodes.Seong-Yong Cho et al.Nanoscale, 9(18), 6103-6110 (2017-04-28)
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