Chinese Journal of Lasers, Volume. 50, Issue 20, 2002404(2023)
Preparation of Polyynes Based on Femtosecond Laser Ablation of Single‑Walled Carbon Nanotubes
[1] Xie L Q, Yan L M, Sun C et al. Force field model and molecular dynamics simulation of polyynes[J]. Computational and Theoretical Chemistry, 997, 14-18(2012).
[2] Januszewski J A, Tykwinski R R. Synthesis and properties of long [n] cumulenes (n ≥ 5)[J]. Chemical Society Reviews, 43, 3184-3203(2014).
[3] Casari C S, Tommasini M, Tykwinski R R et al. Carbon-atom wires: 1-D systems with tunable properties[J]. Nanoscale, 8, 4414-4435(2016).
[4] Movsisyan L D, Franz M, Hampel F et al. Polyyne rotaxanes: stabilization by encapsulation[J]. Journal of the American Chemical Society, 138, 1366-1376(2016).
[5] Baughman R H. Dangerously seeking linear carbon[J]. Science, 312, 1009-1110(2006).
[6] Wakabayashi T, Murakami T, Nagayama H et al. Raman spectral features of longer polyynes HC2nH (n=4‒8) in SWNTs[J]. The European Physical Journal D, 52, 79-82(2009).
[7] Itzhaki L, Altus E, Basch H et al. Harder than diamond: determining the cross-sectional area and Young’s modulus of molecular rods[J]. Angewandte Chemie, 117, 7598-7601(2005).
[8] Nishide D, Wakabayashi T, Sugai T et al. Raman spectroscopy of size-selected linear polyyne molecules C2nH2 (n=4‒6) encapsulated in single-wall carbon nanotubes[J]. The Journal of Physical Chemistry C, 111, 5178-5183(2007).
[9] Malard L M, Nishide D, Dias L G et al. Resonance Raman study of polyynes encapsulated in single-wall carbon nanotubes[J]. Physical Review B, 76, 233412(2007).
[10] Hu A, Lu Q B, Duley W W et al. Spectroscopic characterization of carbon chains in nanostructured tetrahedral carbon films synthesized by femtosecond pulsed laser deposition[J]. The Journal of Chemical Physics, 126, 154705(2007).
[11] Chalifoux W A, Tykwinski R R. Synthesis of polyynes to model the sp-carbon allotrope carbyne[J]. Nature Chemistry, 2, 967-971(2010).
[12] Eastmond R, Johnson T R, Walton D R M. Silylation as a protective method for terminal alkynes in oxidative couplings: a general synthesis of the parent polyynes H(C=C)nH (n=4‒10,12)[J]. Tetrahedron, 28, 4601-4616(1972).
[13] Kang C S, Fujisawa K, Ko Y I et al. Linear carbon chains inside multi-walled carbon nanotubes: growth mechanism, thermal stability and electrical properties[J]. Carbon, 107, 217-224(2016).
[14] Cataldo F. Polyynes formation from electric arc in liquid argon in presence of methane[J]. Fullerenes, Nanotubes and Carbon Nanostructures, 15, 291-301(2007).
[15] Zhang Y F, Zhao J W, Fang Y H et al. Preparation of long linear carbon chain inside multi-walled carbon nanotubes by cooling enhanced hydrogen arc discharge method[J]. Nanoscale, 10, 17824-17833(2018).
[16] Taguchi Y, Endo H, Kodama T et al. Polyyne formation by ns and fs laser induced breakdown in hydrocarbon gas flow[J]. Carbon, 115, 169-174(2017).
[17] Ramadhan A, Wesolowski M, Wakabayashi T et al. Synthesis of hydrogen-and methyl-capped long-chain polyynes by intense ultrashort laser pulse irradiation of toluene[J]. Carbon, 118, 680-685(2017).
[18] Tsuji M, Kuboyama S, Matsuzaki T et al. Formation of hydrogen-capped polyynes by laser ablation of C60 particles suspended in solution[J]. Carbon, 41, 2141-2148(2003).
[19] Liu Q W, Liu G D, Li Z H et al. Preparation and properties of superhydrophobic surface of magnesium alloy by nanosecond laser[J]. Laser & Optoelectronics Progress, 59, 0514004(2022).
[20] Zhao Q, Wan H, Yu S T et al. Investigation of flexible nanoporous silver materials fabricated by femtosecond laser[J]. Chinese Journal of Lasers, 48, 0802009(2021).
[21] Tian M Y, Zuo P, Liang M S et al. Femtosecond laser processing of low-dimensional nanomaterials and its application[J]. Chinese Journal of Lasers, 48, 0202004(2021).
[22] Zhang K, Zhang Y F, Shi L. A review of linear carbon chains[J]. Chinese Chemical Letters, 31, 1746-1756(2020).
[23] Marabotti P, Peggiani S, Facibeni A et al. In situ surface-enhanced Raman spectroscopy to investigate polyyne formation during pulsed laser ablation in liquid[J]. Carbon, 189, 219-229(2022).
[24] Zhao J W, Zhang Y F, Fang Y H et al. Synthesis of polyynes by intense femtosecond laser irradiation of SWCNTs suspended in methanol[J]. Chemical Physics Letters, 682, 96-100(2017).
[25] Chang W W, Liu F, Liu Y F et al. Smallest carbon nanowires made easy: long linear carbon chains confined inside single-walled carbon nanotubes[J]. Carbon, 183, 571-577(2021).
[26] Zaidi A A, Hu A, Henneke D E et al. Femtosecond laser irradiation of liquid alkanes: mechanism of polyyne formation[J]. Chemical Physics Letters, 723, 151-154(2019).
[27] Tsuji M, Tsuji T, Kuboyama S et al. Formation of hydrogen-capped polyynes by laser ablation of graphite particles suspended in solution[J]. Chemical Physics Letters, 355, 101-108(2002).
[28] Liu Y, Feng J J, Li Z Y et al. Double-groove terahertz chirped grating waveguide tube for gas pressure detection[J]. Laser Physics Letters, 16, 056202(2019).
[29] Lee P C, Meisel D. Adsorption and surface-enhanced Raman of dyes on silver and gold sols[J]. The Journal of Physical Chemistry, 86, 3391-3395(1982).
[30] Zhang A, Feng J J, Yan J C et al. Laser reshaping of gold nanoparticles for highly sensitive SERS detection of ciprofloxacin[J]. Applied Surface Science, 583, 152543(2022).
[31] Shi L, Rohringer P, Suenaga K et al. Confined linear carbon chains as a route to bulk carbyne[J]. Nature Materials, 15, 634-639(2016).
[32] Abdurahman A, Shukla A, Seifert G. Ab initio many-body calculations of static dipole polarizabilities of linear carbon chains and chainlike boron clusters[J]. Physical Review B, 66, 155423(2002).
[33] Pan B T, Xiao J, Li J L et al. Carbyne with finite length: the one-dimensional sp carbon[J]. Science Advances, 1, e1500857(2015).
[34] Poveda J C, Guerrero A, Álvarez I et al. Multiphoton ionization and dissociation of naphthalene at 266, 355, and 532 nm[J]. Journal of Photochemistry and Photobiology A: Chemistry, 215, 140-146(2010).
[35] Cataldo F, Ursini O, Angelini G. Kinetics of polyynes formation with the submerged carbon arc[J]. Journal of Electroanalytical Chemistry, 602, 82-90(2007).
[36] Lubman D M, Naaman R, Zare R N. Multiphoton ionization of azulene and naphthalene[J]. The Journal of Chemical Physics, 72, 3034-3040(1980).
[37] Wu W, Gu J J, Song J S et al. The inverted bond in [1.1.1]propellane is a charge-shift bond[J]. Angewandte Chemie International Edition, 48, 1407-1410(2009).
[38] Shaik S, Danovich D, Wu W et al. Quadruple bonding in C2 and analogous eight-valence electron species[J]. Nature Chemistry, 4, 195-200(2012).
Get Citation
Copy Citation Text
Wenbin Chen, Jijun Feng, Yang Liao, Xincheng Xia, Wei Jiang, Wenbo Ren, Tao Luo, Xinluo Zhao. Preparation of Polyynes Based on Femtosecond Laser Ablation of Single‑Walled Carbon Nanotubes[J]. Chinese Journal of Lasers, 2023, 50(20): 2002404
Category: Laser Micro-Nano Manufacturing
Received: Mar. 13, 2023
Accepted: Apr. 25, 2023
Published Online: Sep. 20, 2023
The Author Email: Feng Jijun (fjijun@usst.edu.cn), Zhao Xinluo (xlzhao@shu.edu.cn)