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Confined linear carbon chains as a route to bulk carbyne
ArticleAbstract: Strong chemical activity and extreme instability in ambient conditions characterize carbyne, an infiPalabras claves:Autores:Cahangirov S., Kotakoski J., Lapin Z.J., Meyer J.C., Niimi Y., Novotny L., Paola A. Ayala, Peterlik H., Pichler T., Rohringer P., Rubio A., Shi L., Suenaga K., Wanko M.Fuentes:scopusCarbon nanotubes from enhanced direct injection pyrolytic synthesis as templates for long linear carbon chain formation
ArticleAbstract: Carbon nanotubes (CNTs) can be used as nanoreactors due to their unique hollow nanostructures. In orPalabras claves:annealing, Carbon chains, carbon nanotubes, Raman spectroscopyAutores:Paola A. Ayala, Pichler T., Rohringer P., Saito T., Shi L.Fuentes:scopusExtraction of Linear Carbon Chains Unravels the Role of the Carbon Nanotube Host
ArticleAbstract: Linear carbon chains (LCCs) have been shown to grow inside double-walled carbon nanotubes (DWCNTs),Palabras claves:absorption spectroscopy, double-walled carbon nanotubes, extraction, linear carbon chains, Raman spectroscopy, separation, Single-walled carbon nanotubesAutores:Cao K., Kaiser U., Paola A. Ayala, Pichler T., Shi L., Yanagi K.Fuentes:scopusElectronic band gaps of confined linear carbon chains ranging from polyyne to carbyne
ArticleAbstract: Ultralong linear carbon chains of more than 6000 carbon atoms have recently been synthesized withinPalabras claves:Autores:Cambré S., Paola A. Ayala, Pichler T., Reich S., Rohringer P., Rubio A., Shi L., Wanko M., Waßerroth S., Wenseleers W.Fuentes:scopusOxidation stability of confined linear carbon chains, carbon nanotubes, and graphene nanoribbons as 1D nanocarbons
ArticleAbstract: Three typical one-dimensional (1D)/quasi-1D nanocarbons, linear carbon chains, carbon nanotubes, andPalabras claves:Autores:Cui W., Paola A. Ayala, Pichler T., Saito T., Shi L.Fuentes:scopusPhotothermal synthesis of confined carbyne
ArticleAbstract: The recent materialization carbyne confined to double-walled carbon nanotubes represents a major brePalabras claves:Autores:Johnny Chimborazo, Paola A. Ayala, Pichler T., Senga R., Shi L., Suenaga K.Fuentes:scopusUltra-Clean Isotope Engineered Double-Walled Carbon Nanotubes as Tailored Hosts to Trace the Growth of Carbyne
ArticleAbstract: A unique scope of mechanical, optical, and electrical properties makes the 1-D allotrope of carbon,Palabras claves:atom exchange, confined carbyne, isotope labeling, nanotube reorganization, Raman spectroscopyAutores:Cui W., Paola A. Ayala, Pichler T., Shi L., Simon F., Zhang Y.Fuentes:scopusUnravel the Active Site in Nitrogen-Doped Double-Walled Carbon Nanotubes for Nitrogen Dioxide Gas Sensor
ArticleAbstract: In this paper, a nitrogen dioxide (NO2) gas sensor using nitrogen-doped double-walled carbon nanotubPalabras claves:Gas sensors, Nitrogen dioxide, nitrogen-doped double-walled carbon nanotubes, pyridinic nitrogenAutores:Chobsilp T., Domanov O., Inpaeng S., Issro C., Muangrat W., Paola A. Ayala, Pichler T., Shi L., Wongwiriyapan W., Yordsri V.Fuentes:scopusUnravelling the Complete Raman Response of Graphene Nanoribbons Discerning the Signature of Edge Passivation
ArticleAbstract: Controlling the edge morphology and terminations of graphene nanoribbons (GNR) allows tailoring theiPalabras claves:carbon nanotube hybrids, Graphene nanoribbons, Raman spectroscopy, terryleneAutores:Berkmann C., Cao K., Cui W., Kaiser U., Laranjeira J., Melle-Franco M., Milotti V., Paola A. Ayala, Pichler T., Shi L., Yanagi K., Zhang Y.Fuentes:scopusSelective Enhancement of Inner Tube Photoluminescence in Filled Double-Walled Carbon Nanotubes
ArticleAbstract: A highly selective enhancement of the optical response of the inner tubes of double-walled carbon naPalabras claves:Carbon chains, inner tubes, PhotoluminescenceAutores:Paola A. Ayala, Pichler T., Rohringer P., Shi L.Fuentes:scopus