130 research outputs found

    Effects of etchants in the transfer of chemical vapor deposited graphene

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    The quality of graphene can be strongly modified during the transfer process following chemical vapor deposition (CVD) growth. Here, we transferred CVD-grown graphene from a copper foil to a SiO2/Si substrate using wet etching with four different etchants: HNO3, FeCl3, (NH4)2S2O8, and a commercial copper etchant. We then compared the quality of graphene after the transfer process in terms of surface modifications, pollutions (residues and contaminations), and electrical properties (mobility and density). Our tests and analyses showed that the commercial copper etchant provides the best structural integrity, the least amount of residues, and the smallest doping carrier concentration

    Growth of carbon nanotubes on quasicrystalline alloys

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    We report on the synthesis of carbon nanotubes on quasicrystalline alloys. Aligned multiwalled carbon nanotubes (MWNTs) on the conducting faces of decagonal quasicrystals were synthesized using floating catalyst chemical vapor deposition. The alignment of the nanotubes was found perpendicular to the decagonal faces of the quasicrystals. A comparison between the growth and tube quality has also been made between tubes grown on various quasicrystalline and SiO2 substrates. While a significant MWNT growth was observed on decagonal quasicrystalline substrate, there was no significant growth observed on icosahedral quasicrystalline substrate. Raman spectroscopy and high resolution transmission electron microscopy (HRTEM) results show high crystalline nature of the nanotubes. Presence of continuous iron filled core in the nanotubes grown on these substrates was also observed, which is typically not seen in MWNTs grown using similar process on silicon and/or silicon dioxide substrates. The study has important implications for understanding the growth mechanism of MWNTs on conducting substrates which have potential applications as heat sinks

    Low-density Three-dimensional Foam Using Self-reinforced Hybrid Two-dimensional Atomic Layers

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    Low-density nanostructured foams are often limited in applications due to their low mechanical and thermal stabilities. Here we report an approach of building the structural units of three-dimensional (3D) foams using hybrid two-dimensional (2D) atomic layers made of stacked graphene oxide layers reinforced with conformal hexagonal boron nitride (h-BN) platelets. The ultra-low density (1/400 times density of graphite) 3D porous structures are scalably synthesized using solution processing method. A layered 3D foam structure forms due to presence of h-BN and significant improvements in the mechanical properties are observed for the hybrid foam structures, over a range of temperatures, compared with pristine graphene oxide or reduced graphene oxide foams. It is found that domains of h-BN layers on the graphene oxide framework help to reinforce the 2D structural units, providing the observed improvement in mechanical integrity of the 3D foam structure. © 2014 Macmillan Publishers Limited.5Reinfried, M., Hybrid foams-A new approach for multifunctional applications (2011) Adv. Eng. Mater., 13, pp. 1031-1036Studart, A.R., Gonzenbach, U.T., Tervoort, E., Gauckler, L.J., Processing routes to macroporous ceramics: A review (2006) Journal of the American Ceramic Society, 89 (6), pp. 1771-1789. , DOI 10.1111/j.1551-2916.2006.01044.xReddy, E.S., Schmitz, G.J., Superconducting foams (2002) Supercond. Sci. Technol., 15, pp. L21-L24Banhart, J., Metal foams: Production and stability (2006) Advanced Engineering Materials, 8 (9), pp. 781-794. , DOI 10.1002/adem.200600071Banhart, J., Manufacture, characterisation and application of cellular metals and metal foams (2001) Progress in Materials Science, 46 (6), pp. 559-632. , DOI 10.1016/S0079-6425(00)00002-5, PII S0079642500000025Svagan, A.J., Samir, M.A.S.A., Berglund, L.A., Biomimetic foams of high mechanical performance based on nanostructured cell walls reinforced by native cellulose nanofibrils (2008) Adv. Mater., 20, pp. 1263-1269Cao, X., Preparation of novel 3D graphene networks for supercapacitor applications (2011) Small, 7, pp. 3163-3168Cao, A., Dickrell, P.L., Sawyer, W.G., Ghasemi-Nejhad, M.N., Ajayan, P.M., Materials science: Super-compressible foamlike carbon nanotube films (2005) Science, 310 (5752), pp. 1307-1310. , DOI 10.1126/science.1118957Butler, S.Z., Progress, challenges, and opportunities in two-dimensional materials beyond graphene (2013) ACS Nano, 7, pp. 2898-2926Zhou, W., Wang, Z.L., (2011) Three-Dimensional Nanoarchitectures: Designing Next-Generation Devices, , SpringerNovoselov, K.S., Jiang, D., Schedin, F., Booth, T.J., Khotkevich, V.V., Morozov, S.V., Geim, A.K., Two-dimensional atomic crystals (2005) Proceedings of the National Academy of Sciences of the United States of America, 102 (30), pp. 10451-10453. , DOI 10.1073/pnas.0502848102Keller, S.W., Kim, H.-N., Mallouk, T.E., Layer-by-layer assembly of intercalation compounds and heterostructures on surfaces: Toward molecular "beaker" epitaxy (1994) Journal of the American Chemical Society, 116 (19), pp. 8817-8818Fendler, J.H., Self-assembled nanostructured materials (1996) Chemistry of Materials, 8 (8), pp. 1616-1624Jones, M.R., Mirkin, C.A., Materials science: Self-assembly gets new direction (2012) Nature, 491, pp. 42-43Zhang, X., Mechanically strong and highly conductive graphene aerogel and its use as electrodes for electrochemical power sources (2011) J. Mater. Chem., 21, pp. 6494-6497Xu, Y., Sheng, K., Li, C., Shi, G., Self-assembled graphene hydrogel via a onestep hydrothermal process (2010) ACS Nano, 4, pp. 4324-4330Sudeep, P.M., Covalently interconnected three-dimensional graphene oxide solids (2013) ACS Nano, 7, pp. 7034-7040Yan, Z., Three-dimensional metal-graphene-nanotube multifunctional hybrid materials (2013) ACS Nano, 7, pp. 58-64Lu, X., Macroporous foam of reduced graphene oxides prepared by lyophilization (2012) Mater. Res. Bull., 47, pp. 4335-4339Novoselov, K.S., Geim, A.K., Morozov, S.V., Jiang, D., Zhang, Y., Dubonos, S.V., Grigorieva, I.V., Firsov, A.A., Electric field in atomically thin carbon films (2004) Science, 306 (5696), pp. 666-669. , DOI 10.1126/science.1102896Geim, A.K., Novoselov, K.S., The rise of graphene (2007) Nature Materials, 6 (3), pp. 183-191. , DOI 10.1038/nmat1849, PII NMAT1849Allen, M.J., Tung, V.C., Kaner, R.B., Honeycomb carbon: A review of graphene (2010) Chem. Rev., 110, pp. 132-145Stankovich, S., Dikin, D.A., Dommett, G.H.B., Kohlhaas, K.M., Zimney, E.J., Stach, E.A., Piner, R.D., Ruoff, R.S., Graphene-based composite materials (2006) Nature, 442 (7100), pp. 282-286. , DOI 10.1038/nature04969, PII NATURE04969Han, Z., Ammonia solution strengthened three-dimensional macro-porous graphene aerogel (2013) Nanoscale, 5, pp. 5462-5467Gao, G., Artificially stacked atomic layers: Toward new van der waals solids (2012) Nano Lett., 12, pp. 3518-3525Britnell, L., Field-effect tunneling transistor based on vertical graphene heterostructures (2012) Science, 335, pp. 947-950Rafiee, M.A., Hexagonal boron nitride and graphite oxide reinforced multifunctional porous cement composites (2013) Adv. Funct. Mater., 23, pp. 5624-5630Liu, Z., In-plane heterostructures of graphene and hexagonal boron nitride with controlled domain sizes (2013) Nat. Nanotechnol., 8, pp. 119-124Peng, Q., Zamiri, A.R., Ji, W., De, S., Elastic properties of hybrid graphene/boron nitride monolayer (2012) Acta Mech., 223, pp. 2591-2596Pacile, D., Meyer, J.C., Girit, C.O., Zettl, A., The two-dimensional phase of boron nitride: Few-atomic-layer sheets and suspended membranes (2008) Appl. Phys. Lett., 92, pp. 133107-1331073Pakdel, A., Zhi, C., Bando, Y., Nakayama, T., Golberg, D., Boron nitride nanosheet coatings with controllable water repellency (2011) ACS Nano, 5, pp. 6507-6515Kimura, Y., Wakabayashi, T., Okada, K., Wada, T., Nishikawa, H., Boron nitride as a lubricant additive (1999) Wear, 232 (2), pp. 199-206. , DOI 10.1016/S0043-1648(99)00146-5, PII S0043164899001465Taha-Tijerina, J., Electrically insulating thermal nano-oils using 2D fillers (2012) ACS Nano, 6, pp. 1214-1220Song, L., Large scale growth and characterization of atomic hexagonal boron nitride layers (2010) Nano Lett., 10, pp. 3209-3215Nag, A., Graphene analogues of BN: Novel synthesis and properties (2010) ACS Nano, 4, pp. 1539-1544Neto, A.H.C., Novoselov, K., Two-dimensional crystals: Beyond graphene (2011) Mater. Exp., 1, pp. 10-17Van Duin, A.C.T., Dasgupta, S., Lorant, F., Goddard, W.A., ReaxFF: A reactive force field for hydrocarbons (2001) J. Phys. Chem. A, 105, pp. 9396-9409Paci, J.T., Belytschko, T., Schatz, G.C., Computational studies of the structure, behavior upon heating, and mechanical properties of graphite oxide (2007) J. Phys. Chem. C, 111, pp. 18099-18111Grantab, R., Shenoy, V.B., Ruoff, R.S., Anomalous strength characteristics of tilt grain boundaries in graphene (2010) Science, 330, pp. 946-948Perim, E., Autreto, P.A.S., Paupitz, R., Galvao, D.S., Dynamical aspects of the unzipping of multiwalled boron nitride nanotubes (2013) Phys. Chem. Chem. Phys., 15, p. 19147Marcano, D.C., Improved synthesis of graphene oxide (2010) ACS Nano, 4, pp. 4806-4814Coleman, J.N., Two-dimensional nanosheets produced by liquid exfoliation of layered materials (2011) Science, 331, pp. 568-571Mortier, W.J., Ghosh, S.K., Shankar, S., Electronegativity-equalization method for the calculation of atomic charges in molecules (1986) J. Am. Chem. Soc., 108, pp. 4315-4320Plimpton, S., Fast parallel algorithms for short-range molecular dynamics (1995) J. Comput. Phys., 117, pp. 1-1

    Phase Stability of Hexagonal/cubic Boron Nitride Nanocomposites

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    Boron nitride (BN) is an exceptional material and among its polymorphs, two-dimensional (2D) hexagonal and three-dimensional (3D) cubic BN (h-BN and c-BN) phases are most common. The phase stability regimes of these BN phases are still under debate and phase transformations of h-BN/c-BN remain a topic of interest. Here, we investigate the phase stability of 2D/3D h-BN/c-BN nanocomposites and show that the co-existence of two phases can lead to strong non-linear optical properties and low thermal conductivity at room temperature. Furthermore, spark-plasma sintering of the nanocomposite shows complete phase transformation to 2D h-BN with improved crystalline quality, where 3D c-BN grain sizes governs the nucleation and growth kinetics. Our demonstration might be insightful in phase engineering of BN polymorphs based nanocomposites with desirable properties for optoelectronics and thermal energy management applications.Comment: 29 pages, 5 figure

    Oligodendroglial neoplasms with ganglioglioma-like maturation: a diagnostic pitfall

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    Although oligodendroglial neoplasms are traditionally considered purely glial, increasing evidence suggests that they are capable of neuronal or neurocytic differentiation. Nevertheless, ganglioglioma-like foci (GGLF) have not been previously described. Herein, we report seven examples where the primary differential diagnosis was a ganglioglioma with an oligodendroglial component. These five male and two female patients ranged in age from 29 to 63 (median 44) years at initial presentation and neuroimaging features were those of diffuse gliomas in general. At presentation, the glial component was oligodendroglioma in six and oligoastrocytoma in one; one was low-grade and six were anaplastic. A sharp demarcation from adjacent GGLF was common, although some intermingling was always present. The GGLF included enlarged dysmorphic and occasionally binucleate ganglion cells, Nissl substance, expression of neuronal antigens, GFAP-positive astrocytic elements, and low Ki-67 labeling indices. In contrast to classic ganglioglioma, however, cases lacked eosinophilic granular bodies and CD34-positive tumor cells. Scattered bizarre astrocytes were also common and one case had focal neurocytic differentiation. By FISH analysis, five cases showed 1p/19q codeletion. In the four cases with deletions and ample dysmorphic ganglion cells for analysis, the deletions were found in both components. At last follow-up, two patients suffered recurrences, one developed radiation necrosis mimicking recurrence, and one died of disease 7.5 years after initial surgery. We conclude that GGLF represents yet another form of neuronal differentiation in oligodendroglial neoplasms. Recognition of this pattern will prevent a misdiagnosis of ganglioglioma with its potential for under-treatment

    Choroid plexus tumours

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    Choroid plexus tumours are rare epithelial brain tumours and limited information is available regarding their biology and the best treatment. A meta-analysis was done to determine prognostic factors and the influence of various treatment modalities. A thorough review of the medical literature (1966–1998) revealed 566 well-documented choroid plexus tumours. These were entered into a database, which was analysed to determine prognostic factors and treatment modalities. Most patients with a supratentorial tumour were children, while the most common sites in adults were the fourth ventricle and the cerebellar pontine angle. Cerebellar pontine angle tumours were more frequently benign. Histology was the most important prognostic factor, as one, five, and 10-year projected survival rates were 90, 81, and 77% in choroid plexus-papilloma (n=353) compared to only 71, 41, and 35% in choroid plexus-carcinoma respectively (P<0.0005). Surgery was prognostically relevant for both choroid plexus-papilloma (P=0.0005) and choroid plexus-carcinoma (P=0.0001). Radiotherapy was associated with significantly better survival in choroid plexus-carcinomas. Eight of 22 documented choroid plexus-carcinomas responded to chemotherapy. Relapse after primary treatment was a poor prognostic factor in choroid plexus-carcinoma patients but not in choroid plexus-papilloma patients. Treatment of choroid plexus tumours should start with radical surgical resection. This should be followed by adjuvant treatment in case of choroid plexus-carcinoma, and a ‘wait and see’ approach in choroid plexus-papilloma

    Pituitary surgery for small prolactinomas as an alternative to treatment with dopamine agonists

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    Despite the fact that consensus guidelines recommend long-term dopamine agonist (DA) therapy as a first-line approach to the treatment of small prolactinoma, some patients continue to prefer a primary surgical approach. Concerns over potential adverse effects of long-term medical therapy and/or the desire to become pregnant and avoid long-term medication are often mentioned as reasons to pursue surgical removal. In this retrospective study, 34 consecutive patients (30 female, 4 male) preferably underwent primary pituitary surgery without prior DA treatment for small prolactinomas (microprolactinoma 1–10 mm, macroprolactinoma 11–20 mm) at the Department of Neurosurgery, University of Bern, Switzerland. At the time of diagnosis, 31 of 34 patients (91%) presented with symptoms. Patients with microprolactinomas had significantly lower preoperative prolactin (PRL) levels compared to patients with macroprolactinomas (median 143 μg/l vs. 340 μg/l). Ninety percent of symptomatic patients experienced significant improvement of their signs and symptoms upon surgery. The postoperative PRL levels (median 3.45 μg/l) returned to normal in 94% of patients with small prolactinomas. There was no mortality and no major morbidities. One patient suffered from hypogonadotropic hypogonadism after surgery despite postoperative normal PRL levels. Long-term remission was achieved in 22 of 24 patients (91%) with microprolactinomas, and in 8 of 10 patients (80%) with macroprolactinomas after a median follow-up period of 33.5 months. Patients with small prolactinomas can safely consider pituitary surgery in a specialized centre with good chance of long-term remission as an alternative to long-term DA therapy

    Morbidity in 201 patients with small sized meningioma treated by microsurgery

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    The management of patients with small, often asymptomatic meningiomas is controversial and includes observation, microsurgery (MS) and stereotactic radiosurgery (SRS). The purpose of this retrospective study was to analyze the morbidity and the extent of removal after MS for small (< or =3 cm) intracranial meningiomas and compare these results to those of SRS reported in the literature
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