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1121“…The proposed smart cutting tool can measure applied forces to the diamond tool and correct the nanometric positioning displacements of the diamond tool in three dimensions. …”
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1122por Cao, Fangyu, Liu, Ying, Xu, Jiajun, He, Yadong, Hammouda, B., Qiao, Rui, Yang, Bao“…The increase of thermal conductivity with AOT loading after the onset of micellization indicates that the thermal transport in the core of AOT micelles and across the surfactant-oil interfaces, both of which span only a few nanometers, are efficient.…”
Publicado 2015
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1123“…First, we extract the association and dissociation times from data for various genomic distances between loci, and we show that the looping time occurs in confined nanometer regions. Second, we characterize the looping time distribution for two loci in the presence of multiple DNA damages. …”
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1124por Le-The, Hai, Tiggelaar, Roald M., Berenschot, Erwin, van den Berg, Albert, Tas, Niels, Eijkel, Jan C. T.“…Importantly, the enhancement is independent of micro- or nanostructuring of such nanometer-thick films. Deposition of a second Au layer on top of the pretreated Au layer makes the adhesion stable for at least 5 months in environmental air. …”
Publicado 2019
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1125por Rahman, Mohammad, Chang, Irene Y., Harned, Adam, Maheshwari, Richa, Amoateng, Kwabena, Narayan, Kedar, Cohen-Fix, Orna“…To understand how these membranes are breached to allow merging of parental genomes we used focused ion beam scanning electron microscopy (FIB-SEM) to study the architecture of the pronuclear membranes at nanometer-scale resolution. We find that at metaphase, the interface between the two pronuclei is composed of two membranes perforated by fenestrations ranging from tens of nanometers to several microns in diameter. …”
Publicado 2019
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1126por Han, Shuaiyuan, Pensec, Sandrine, Yilmaz, Dijwar, Lorthioir, Cédric, Jestin, Jacques, Guigner, Jean-Michel, Niepceron, Frédérick, Rieger, Jutta, Stoffelbach, François, Nicol, Erwan, Colombani, Olivier, Bouteiller, Laurent“…Such anisotropic objects are difficult to prepare with nanometric dimensions. Here we describe a robust and versatile strategy to form micrometer long Janus nanorods with diameters in the 10-nanometer range, by self-assembly in water of end-functionalized polymers. …”
Publicado 2020
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1127por Wang, Chao, Ning, Yanxiao, Huang, Haibo, Li, Shiwen, Xiao, Chuanhai, Chen, Qi, Peng, Li, Guo, Shuainan, Li, Yifan, Liu, Conghui, Wu, Zhong-Shuai, Li, Xianfeng, Chen, Liwei, Gao, Chao, Wu, Chuan, Fu, Qiang“…Intercalation of anions together with cations is directly observed in the surface region of a graphite electrode with tens of nanometers thickness, the concentration of which is one order higher than that in bulk. …”
Publicado 2020
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1128por Yakoubi, Sana, Kobayashi, Isao, Uemura, Kunihiko, Nakajima, Mitsutoshi, Isoda, Hiroko, Ksouri, Riadh, Saidani-Tounsi, Moufida, Neves, Marcos A.“…GC-MS analysis showed that the use of HPH affected the active compounds, consistent with the differences in linalool and 2-Caren-10-al content. Hence, the novel nanometric delivery system contributes to food industry fortification.…”
Publicado 2021
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1129por Nunes Vicente, Filipe, Lelek, Mickael, Tinevez, Jean-Yves, Tran, Quang D., Pehau-Arnaudet, Gerard, Zimmer, Christophe, Etienne-Manneville, Sandrine, Giannone, Gregory, Leduc, Cécile“…Here, using super-resolution microscopy (SRM), we show that vimentin filaments exhibit a ~49-nanometer axial repeat both in cells and in vitro. …”
Publicado 2022
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1130“…In this work, we investigate the effects of physical characteristics of Cr nanometal surfaces and metal/silicon interfaces on hot carrier optical detection. …”
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1131“…Plasmonic nanostructures with extremely small features especially demonstrate amazing new effects as the feature sizes scale down to the sub-nanometer scale, such as quantum size effects, quantum tunneling, spill-out of electrons and nonlocal states etc. …”
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1132“…However, how these structures, spanning a few tens of nanometers, shape synaptic signaling remains little understood. …”
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1133por Diego, Michele, Gandolfi, Marco, Casto, Alessandro, Bellussi, Francesco Maria, Vialla, Fabien, Crut, Aurélien, Roddaro, Stefano, Fasano, Matteo, Vallée, Fabrice, Del Fatti, Natalia, Maioli, Paolo, Banfi, Francesco“…In this context water immersed carbon nanotubes (CNTs) may act as an ideal optoacoustic source, due to their nanometric radial dimensions, peculiar thermal properties and broad band optical absorption. …”
Publicado 2022
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1134por BenJemaa, Mariem, Rahali, Fatma Zohra, Falleh, Hanen, Beji-Serairi, Raja, Megdiche-Ksouri, Wided, Hamrouni, Ibtissem, Hammami, Majdi, Nehme, Ralph, Pereira, Renato B., Andrés, Sonia, Bouhallab, Said, Pereira, David M., Ceciliani, Fabrizio, Abdennebi-Najar, Latifa, Ksouri, Riadh“…The optimal nanoemulsion showed nanometer-sized droplets (380 nm), a polydispersity index less than 0.5, and a suitable Zeta potential (−10.3 mV). …”
Publicado 2022
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1135por One, Roxana-Alina, Mican, Sever, CimpoesȖu, Angela-Georgiana, Joldos, Marius, Tetean, Romulus, Tiușan, Coriolan Viorel“…Our study addresses the problematics of magnetic skyrmions, nanometer-size vortex-like swirling topological defects, broadly studied today for applications in classic, neuromorphic and quantum information technologies. …”
Publicado 2022
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1136por Lisovskiy, Valeriy, Minenkov, Alexey, Dudin, Stanislav, Bogatyrenko, Sergiy, Platonov, Pavel, Yegorenkov, Vladimir“…The model has shown that nanometer- and even micrometer-sized particles formed in the plasma cannot cross the near-electrode sheath and reach the electrode surface. …”
Publicado 2022
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1137por Ernst, Wolfgang E., Lasserus, Maximilian, Knez, Daniel, Hofer, Ferdinand, Hauser, Andreas W.“…Nanoparticles with diameters in the range of a few nanometers, consisting of gold and vanadium oxide, are synthesized by sequential doping of cold helium droplets in a molecular beam apparatus and deposited on solid carbon substrates. …”
Publicado 2022
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1138por Braun, H, Ivanovich-Grishanov, Boris, Logatchev, P V, Podgorny, Fedor, Telnov, Valery I, Angal-Kalinin, Deepa, Appleby, Robert, Jones, James, Kalinin, Alexander, Napoly, Olivier, Payet, Jacques, Braun, Hans Heinrich, Schulte, Daniel, Zimmermann, Frank, Barlow, Roger J, Bailey, Ian Richard, Jenner, Leo, Jones, Roger, Kourevlev, German Yu, Walker, Nick, Takahasi, Tohru, Gao, Jie, Liu Wei Bin, Pei Guo Xi, Wang Jiu Qing, Delerue, Nicolas, Dixit, Sudhir, Howell, David Francis, Reichold, Armin, Agapov, Ilya V, Blair, Grahame A, Boorman, Gary, Carter, John, Driouichi, Chafik, Price, Michael T, Araki, Sakae, Hayano, Hitoshi, Higashi, Yasuo, Honda, Yosuke, Kanazawa, Ken Ichi, Kubo, Kiyoshi, Kume, Tatsuya, Kuriki, Masao, Kuroda, Shigeru, Masuzawa, Mika, Naito, Takashi, Okugi, Toshiyuki, Sugahara, Ryuhei, Tauchi, Toshiaki, Terunuma, Nobuhiro, Toge, Nobu, Urakawa, Junji, Vogel, Vladimir, Yamaoka, Hiroshi, Yokoya, Kaoru, Yoshihisa, Iwashita, Mihara, Takanori, Bambade, Philip, Wolski, Andrzej, Gronberg, Jeff, Takashi Boogert, Stewart, Lyapin, A, Malton, Stephen, Miller, David J, Kumada, Masayuki, Danagulyan, S, Torrence, Eric, Choi Jinh Yuk, Huang Jung Yun, Sik Kang Heung, Kim, E S, Kim Seungh Wan, Soo Ko In, Burrows, P N, Christian, Glenn B, Clarke, Christine, Hartin, Anthony F, Dabiri-Khah, Hamid, Molloy, Stephen, Bane, Karl Leopold Freitag, Brachmann, Axel, Himel, Thomas, Markiewicz, Thomas W, Nelson, Janice, Nosochkov, Yuri, Phinney, Nan, Torino, Mauro, Pivi, Francesco, Raubenheimer, T O, Ross, Marc, Ruland, R E, Seryi, Andrei, Spencer, Cherrill M, Tenenbaum, P G, Woodley, Mark, Komamiya, Sachio, Sanuki, Tomoyuki, Suehara, T“…An important technical challenge is obviously the high gradient acceleration but what is similarly challenging is the collision of extremely small beams of a few nanometer size. The latter challenge has three distinct issues: creating small emittance beams, preserving the emittance during acceleration and transport, and focusing the beams to nanometers. …”
Publicado 2005
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1139“…In this work, we combine experiment and simulation to report crowding heterogeneities on reconstituted membranes and live cell membranes with nanometer spatial resolution. By quantifying the effective binding affinity of IgG monoclonal antibodies to engineered antigen sensors, we discover sharp gradients in crowding within a few nanometers of the crowded membrane surface. …”
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1140por Stilp, E., Suter, A., Prokscha, T., Salman, Z., Morenzoni, E., Keller, H., Pahlke, P., Hühne, R., Bernhard, C., Liang, Ruixing, Hardy, W. N., Bonn, D. A., Baglo, J. C., Kiefl, R. F.“…Here we show how changes in the magnetic screening profile of YBCO in the Meissner state due to PPC can be determined on a nanometer scale utilizing low-energy muons. The data obtained reveal a strongly increased superfluid density within the first few tens of nanometers from the sample surface. …”
Publicado 2014
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