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In Situ Observations of Ionospheric Heating Effects: First Results from a Joint SURA and NorSat-1 Experiment 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (13)
作者:  Chernyshov, A. A.;  Chugunin, D., V;  Frolov, V. L.;  Clausen, L. B. N.;  Miloch, W. J.;  Mogilevsky, M. M.
收藏  |  浏览/下载:37/0  |  提交时间:2020/06/16
active experiments  ionospheric heating  ionosphere  ionospheric irregularities  plasma instabilities  
Limits on gas impermeability of graphene 期刊论文
NATURE, 2020, 579 (7798) : 229-+
作者:  Pagano, Justin K.;  Xie, Jing;  Erickson, Karla A.;  Cope, Stephen K.;  Scott, Brian L.;  Wu, Ruilian;  Waterman, Rory;  Morris, David E.;  Yang, Ping;  Gagliardi, Laura;  Kiplinger, Jaqueline L.
收藏  |  浏览/下载:36/0  |  提交时间:2020/07/03

Despite being only one-atom thick, defect-free graphene is considered to be completely impermeable to all gases and liquids(1-10). This conclusion is based on theory(3-8) and supported by experiments(1,9,10) that could not detect gas permeation through micrometre-size membranes within a detection limit of 10(5) to 10(6) atoms per second. Here, using small monocrystalline containers tightly sealed with graphene, we show that defect-free graphene is impermeable with an accuracy of eight to nine orders of magnitude higher than in the previous experiments. We are capable of discerning (but did not observe) permeation of just a few helium atoms per hour, and this detection limit is also valid for all other gases tested (neon, nitrogen, oxygen, argon, krypton and xenon), except for hydrogen. Hydrogen shows noticeable permeation, even though its molecule is larger than helium and should experience a higher energy barrier. This puzzling observation is attributed to a two-stage process that involves dissociation of molecular hydrogen at catalytically active graphene ripples, followed by adsorbed atoms flipping to the other side of the graphene sheet with a relatively low activation energy of about 1.0 electronvolt, a value close to that previously reported for proton transport(11,12). Our work provides a key reference for the impermeability of two-dimensional materials and is important from a fundamental perspective and for their potential applications.


  
Phase separation organizes the site of autophagosome formation 期刊论文
NATURE, 2020, 578 (7794) : 301-+
作者:  Imachi, Hiroyuki;  Nobu, Masaru K.;  Nakahara, Nozomi;  Morono, Yuki;  Ogawara, Miyuki;  Takaki, Yoshihiro;  Takano, Yoshinori;  Uematsu, Katsuyuki;  Ikuta, Tetsuro;  Ito, Motoo;  Matsui, Yohei;  Miyazaki, Masayuki;  Murata, Kazuyoshi;  Saito, Yumi;  Sakai, Sanae;  Song, Chihong;  Tasumi, Eiji;  Yamanaka, Yuko;  Yamaguchi, Takashi;  Kamagata, Yoichi;  Tamaki, Hideyuki;  Takai, Ken
收藏  |  浏览/下载:53/0  |  提交时间:2020/07/03

The pre-autophagosomal structure in yeast is a liquid-like condensate of Atg proteins whose phase separation may have a critical, active role in autophagy.


Many biomolecules undergo liquid-liquid phase separation to form liquid-like condensates that mediate diverse cellular functions(1,2). Autophagy is able to degrade such condensates using autophagosomes-double-membrane structures that are synthesized de novo at the pre-autophagosomal structure (PAS) in yeast(3-5). Whereas Atg proteins that associate with the PAS have been characterized, the physicochemical and functional properties of the PAS remain unclear owing to its small size and fragility. Here we show that the PAS is in fact a liquid-like condensate of Atg proteins. The autophagy-initiating Atg1 complex undergoes phase separation to form liquid droplets in vitro, and point mutations or phosphorylation that inhibit phase separation impair PAS formation in vivo. In vitro experiments show that Atg1-complex droplets can be tethered to membranes via specific protein-protein interactions, explaining the vacuolar membrane localization of the PAS in vivo. We propose that phase separation has a critical, active role in autophagy, whereby it organizes the autophagy machinery at the PAS.


  
Properties of the Stimulated Electromagnetic Emissions During the Inclined High-Frequency Pumping of the Ionosphere Near the Fourth Electron Gyroharmonic at the High-Frequency Active Auroral Research Program Facility 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2019, 46 (11) : 5653-5661
作者:  Shindin, A. V.;  Grach, S. M.;  Sergeev, E. N.;  Smolina, V. P.;  Pogorelko, N. A.;  Bernhardt, P. A.;  Briczinski, S. J.;  Broughton, M.;  LaBelle, J.;  McCarrick, M. J.
收藏  |  浏览/下载:15/0  |  提交时间:2019/11/26
ionosphere  active experiments  stimulated electromagnetic emission  inclined heating  electron gyroharmonic