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Observing carbon dioxide emissions over China's cities and industrial areas with the Orbiting Carbon Observatory-2 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2020, 20 (14) : 8501-8510
作者:  Zheng, Bo;  Chevallier, Frederic;  Ciais, Philippe;  Broquet, Gregoire;  Wang, Yilong;  Lian, Jinghui;  Zhao, Yuanhong
收藏  |  浏览/下载:17/0  |  提交时间:2020/08/09
Identifying a regional aerosol baseline in the eastern North Atlantic using collocated measurements and a mathematical algorithm to mask high-submicron-number-concentration aerosol events 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2020, 20 (12) : 7553-7573
作者:  Gallo, Francesca;  Uin, Janek;  Springston, Stephen;  Wang, Jian;  Zheng, Guangjie;  Kuang, Chongai;  Wood, Robert;  Azevedo, Eduardo B.;  McComiskey, Allison;  Mei, Fan;  Theisen, Adam;  Kyrouac, Jenni;  Aiken, Allison C.
收藏  |  浏览/下载:12/0  |  提交时间:2020/07/06
Volatile organic compounds and ozone air pollution in an oil production region in northern China 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2020, 20 (11) : 7069-7086
作者:  Chen, Tianshu;  Xue, Likun;  Zheng, Penggang;  Zhang, Yingnan;  Liu, Yuhong;  Sun, Jingjing;  Han, Guangxuan;  Li, Hongyong;  Zhang, Xin;  Li, Yunfeng;  Li, Hong;  Dong, Can;  Xu, Fei;  Zhang, Qingzhu;  Wang, Wenxing
收藏  |  浏览/下载:11/0  |  提交时间:2020/06/22
Effects of fertilization and stand age on N2O and NO emissions from tea plantations: a site-scale study in a subtropical region using a modified biogeochemical model 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2020, 20 (11) : 6903-6919
作者:  Zhang, Wei;  Yao, Zhisheng;  Zheng, Xunhua;  Liu, Chunyan;  Wang, Rui;  Wang, Kai;  Li, Siqi;  Han, Shenghui;  Zuo, Qiang;  Shi, Jianchu
收藏  |  浏览/下载:13/0  |  提交时间:2020/06/16
Carbenium ion-mediated oligomerization of methylglyoxal for secondary organic aerosol formation 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2020, 117 (24) : 13294-13299
作者:  Ji, Yuemen;  Shi, Qiuju;  Li, Yixin;  An, Taicheng;  Zheng, Jun;  Peng, Jianfei;  Gao, Yanpeng;  Chen, Jiangyao;  Li, Guiying;  Wang, Yuan;  Zhang, Fang;  Zhang, Annie L.;  Zhao, Jiayun;  Molina, Mario J.;  Zhang, Renyi
收藏  |  浏览/下载:17/0  |  提交时间:2020/06/09
secondary organic aerosol  aqueous  oligomerization  brown carbon  cationic  
Proton-assisted growth of ultra-flat graphene films 期刊论文
NATURE, 2020, 577 (7789) : 204-+
作者:  Yuan, Guowen;  Lin, Dongjing;  Wang, Yong;  Huang, Xianlei;  Chen, Wang;  Xie, Xuedong;  Zong, Junyu;  Yuan, Qian-Qian;  Zheng, Hang;  Wang, Di;  Xu, Jie;  Li, Shao-Chun;  Zhang, Yi;  Sun, Jian;  Xi, Xiaoxiang;  Gao, Libo
收藏  |  浏览/下载:11/0  |  提交时间:2020/07/03

Graphene films grown by chemical vapour deposition have unusual physical and chemical properties that offer promise for applications such as flexible electronics and high-frequency transistors(1-10). However, wrinkles invariably form during growth because of the strong coupling to the substrate, and these limit the large-scale homogeneity of the film(1-4,11,12). Here we develop a proton-assisted method of chemical vapour deposition to grow ultra-flat graphene films that are wrinkle-free. Our method of proton penetration(13-17) and recombination to form hydrogen can also reduce the wrinkles formed during traditional chemical vapour deposition of graphene. Some of the wrinkles disappear entirely, owing to the decoupling of van der Waals interactions and possibly an increase in distance from the growth surface. The electronic band structure of the as-grown graphene films shows a V-shaped Dirac cone and a linear dispersion relation within the atomic plane or across an atomic step, confirming the decoupling from the substrate. The ultra-flat nature of the graphene films ensures that their surfaces are easy to clean after a wet transfer process. A robust quantum Hall effect appears even at room temperature in a device with a linewidth of 100 micrometres. Graphene films grown by proton-assisted chemical vapour deposition should largely retain their intrinsic performance, and our method should be easily generalizable to other nanomaterials for strain and doping engineering.


  
Significant production of ClNO2 and possible source of Cl-2 from N2O5 uptake at a suburban site in eastern China 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2020, 20 (10) : 6147-6158
作者:  Xia, Men;  Peng, Xiang;  Wang, Weihao;  Yu, Chuan;  Sun, Peng;  Li, Yuanyuan;  Liu, Yuliang;  Xu, Zhengning;  Wang, Zhe;  Xu, Zheng;  Nie, Wei;  Ding, Aijun;  Wang, Tao
收藏  |  浏览/下载:16/0  |  提交时间:2020/06/01
Contribution of nitrous acid to the atmospheric oxidation capacity in an industrial zone in the Yangtze River Delta region of China 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2020, 20 (9) : 5457-5475
作者:  Zheng, Jun;  Shi, Xiaowen;  Ma, Yan;  Ren, Xinrong;  Jabbour, Halim;  Diao, Yiwei;  Wang, Weiwei;  Ge, Yifeng;  Zhang, Yuchan;  Zhu, Wenhui
收藏  |  浏览/下载:12/0  |  提交时间:2020/05/13
A preliminary study on wind tunnel simulations of the explosive growth and dissipation of fine particulate matter in ambient air 期刊论文
ATMOSPHERIC RESEARCH, 2020, 235
作者:  Xu, Jingxin;  Zhu, Fahua;  Wang, Sheng;  Zhao, Xiuyong;  Zhang, Ming;  Ge, Xinlei;  Wang, Junfeng;  Tian, Wenxin;  Wang, Liwen;  Yang, Liu;  Ding, Li;  Lu, Xiaobo;  Chen, Xinxin;  Zheng, Youfei;  Guo, Zhaobing
收藏  |  浏览/下载:12/0  |  提交时间:2020/07/02
Wind tunnel  Fine particulate matter  Explosive growth  Dissipation  Relative humidity  Liquid water content  
Mutations that prevent caspase cleavage of RIPK1 cause autoinflammatory disease 期刊论文
NATURE, 2020, 577 (7788) : 103-+
作者:  Lalaoui, Najoua;  Boyden, Steven E.;  Oda, Hirotsugu;  Wood, Geryl M.;  Stone, Deborah L.;  Chau, Diep;  Liu, Lin;  Stoffels, Monique;  Kratina, Tobias;  Lawlor, Kate E.;  Zaal, Kristien J. M.;  Hoffmann, Patrycja M.;  Etemadi, Nima;  Shield-Artin, Kristy;  Biben, Christine;  Tsai, Wanxia Li;  Blake, Mary D.;  Kuehn, Hye Sun;  Yang, Dan;  Anderton, Holly;  Silke, Natasha;  Wachsmuth, Laurens;  Zheng, Lixin;  Moura, Natalia Sampaio;  Beck, David B.;  Gutierrez-Cruz, Gustavo;  Ombrello, Amanda K.;  Pinto-Patarroyo, Gineth P.;  Kueh, Andrew J.;  Herold, Marco J.;  Hall, Cathrine;  Wang, Hongying;  Chae, Jae Jin;  Dmitrieva, Natalia I.;  McKenzie, Mark;  Light, Amanda;  Barham, Beverly K.;  Jones, Anne;  Romeo, Tina M.;  Zhou, Qing;  Aksentijevich, Ivona;  Mullikin, James C.;  Gross, Andrew J.;  Shum, Anthony K.;  Hawkins, Edwin D.;  Masters, Seth L.;  Lenardo, Michael J.;  Boehm, Manfred;  Rosenzweig, Sergio D.;  Pasparakis, Manolis;  Voss, Anne K.;  Gadina, Massimo;  Kastner, Daniel L.;  Silke, John
收藏  |  浏览/下载:24/0  |  提交时间:2020/07/03

RIPK1 is a key regulator of innate immune signalling pathways. To ensure an optimal inflammatory response, RIPK1 is regulated post-translationally by well-characterized ubiquitylation and phosphorylation events, as well as by caspase-8-mediated cleavage1-7. The physiological relevance of this cleavage event remains unclear, although it is thought to inhibit activation of RIPK3 and necroptosis8. Here we show that the heterozygous missense mutations D324N, D324H and D324Y prevent caspase cleavage of RIPK1 in humans and result in an early-onset periodic fever syndrome and severe intermittent lymphadenopathy-a condition we term '  cleavage-resistant RIPK1-induced autoinflammatory syndrome'  . To define the mechanism for this disease, we generated a cleavage-resistant Ripk1(D325A) mutant mouse strain. Whereas Ripk1(-/-) mice died postnatally from systemic inflammation, Ripk1(D325A/D325A) mice died during embryogenesis. Embryonic lethality was completely prevented by the combined loss of Casp8 and Ripk3, but not by loss of Ripk3 or Mlkl alone. Loss of RIPK1 kinase activity also prevented Ripk1(D325A/D325A) embryonic lethality, although the mice died before weaning from multi-organ inflammation in a RIPK3-dependent manner. Consistently, Ripk1(D325A/D325A) and Ripk1(D325A/+) cells were hypersensitive to RIPK3-dependent TNF-induced apoptosis and necroptosis. Heterozygous Ripk1(D325A/+) mice were viable and grossly normal, but were hyper-responsive to inflammatory stimuli in vivo. Our results demonstrate the importance of caspase-mediated RIPK1 cleavage during embryonic development and show that caspase cleavage of RIPK1 not only inhibits necroptosis but also maintains inflammatory homeostasis throughout life.