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Recycling and metabolic flexibility dictate life in the lower oceanic crust 期刊论文
NATURE, 2020, 579 (7798) : 250-+
作者:  Zhou, Peng;  Yang, Xing-Lou;  Wang, Xian-Guang;  Hu, Ben;  Zhang, Lei;  Zhang, Wei;  Si, Hao-Rui;  Zhu, Yan;  Li, Bei;  Huang, Chao-Lin;  Chen, Hui-Dong;  Chen, Jing;  Luo, Yun;  Guo, Hua;  Jiang, Ren-Di;  Liu, Mei-Qin;  Chen, Ying;  Shen, Xu-Rui;  Wang, Xi;  Zheng, Xiao-Shuang;  Zhao, Kai;  Chen, Quan-Jiao;  Deng, Fei;  Liu, Lin-Lin;  Yan, Bing;  Zhan, Fa-Xian;  Wang, Yan-Yi;  Xiao, Geng-Fu;  Shi, Zheng-Li
收藏  |  浏览/下载:37/0  |  提交时间:2020/05/13

The lithified lower oceanic crust is one of Earth'  s last biological frontiers as it is difficult to access. It is challenging for microbiota that live in marine subsurface sediments or igneous basement to obtain sufficient carbon resources and energy to support growth(1-3) or to meet basal power requirements(4) during periods of resource scarcity. Here we show how limited and unpredictable sources of carbon and energy dictate survival strategies used by low-biomass microbial communities that live 10-750 m below the seafloor at Atlantis Bank, Indian Ocean, where Earth'  s lower crust is exposed at the seafloor. Assays of enzyme activities, lipid biomarkers, marker genes and microscopy indicate heterogeneously distributed and viable biomass with ultralow cell densities (fewer than 2,000 cells per cm(3)). Expression of genes involved in unexpected heterotrophic processes includes those with a role in the degradation of polyaromatic hydrocarbons, use of polyhydroxyalkanoates as carbon-storage molecules and recycling of amino acids to produce compounds that can participate in redox reactions and energy production. Our study provides insights into how microorganisms in the plutonic crust are able to survive within fractures or porous substrates by coupling sources of energy to organic and inorganic carbon resources that are probably delivered through the circulation of subseafloor fluids or seawater.


  
Power generation from ambient humidity using protein nanowires 期刊论文
NATURE, 2020, 578 (7796) : 550-+
作者:  Luong, Duy X.;  Bets, Ksenia V.;  Algozeeb, Wala Ali;  Stanford, Michael G.;  Kittrell, Carter;  Chen, Weiyin;  Salvatierra, Rodrigo V.;  Ren, Muqing;  McHugh, Emily A.;  Advincula, Paul A.;  Wang, Zhe;  Bhatt, Mahesh;  Guo, Hua;  Mancevski, Vladimir;  Shahsavari, Rouzbeh;  Yakobson, Boris I.;  Tour, James M.
收藏  |  浏览/下载:85/0  |  提交时间:2020/07/03

Harvesting energy from the environment offers the promise of clean power for self-sustained systems(1,2). Known technologies-such as solar cells, thermoelectric devices and mechanical generators-have specific environmental requirements that restrict where they can be deployed and limit their potential for continuous energy production(3-5). The ubiquity of atmospheric moisture offers an alternative. However, existing moisture-based energy-harvesting technologies can produce only intermittent, brief (shorter than 50 seconds) bursts of power in the ambient environment, owing to the lack of a sustained conversion mechanism(6-12). Here we show that thin-film devices made from nanometre-scale protein wires harvested from the microbe Geobacter sulfurreducens can generate continuous electric power in the ambient environment. The devices produce a sustained voltage of around 0.5 volts across a 7-micrometre-thick film, with a current density of around 17 microamperes per square centimetre. We find the driving force behind this energy generation to be a self-maintained moisture gradient that forms within the film when the film is exposed to the humidity that is naturally present in air. Connecting several devices linearly scales up the voltage and current to power electronics. Our results demonstrate the feasibility of a continuous energy-harvesting strategy that is less restricted by location or environmental conditions than other sustainable approaches.


A new type of energy-harvesting device, based on protein nanowires from the microbe Geobacter sulforreducens, can generate a sustained power output by producing a moisture gradient across the nanowire film using natural humidity.


  
Wafer-scale single-crystal hexagonal boron nitride monolayers on Cu (111) 期刊论文
NATURE, 2020, 579 (7798) : 219-+
作者:  Luong, Duy X.;  Bets, Ksenia V.;  Algozeeb, Wala Ali;  Stanford, Michael G.;  Kittrell, Carter;  Chen, Weiyin;  Salvatierra, Rodrigo V.;  Ren, Muqing;  McHugh, Emily A.;  Advincula, Paul A.;  Wang, Zhe;  Bhatt, Mahesh;  Guo, Hua;  Mancevski, Vladimir;  Shahsavari, Rouzbeh
收藏  |  浏览/下载:80/0  |  提交时间:2020/07/03

Ultrathin two-dimensional (2D) semiconducting layered materials offer great potential for extending Moore'  s law of the number of transistors in an integrated circuit(1). One key challenge with 2D semiconductors is to avoid the formation of charge scattering and trap sites from adjacent dielectrics. An insulating van der Waals layer of hexagonal boron nitride (hBN) provides an excellent interface dielectric, efficiently reducing charge scattering(2,3). Recent studies have shown the growth of single-crystal hBN films on molten gold surfaces(4) or bulk copper foils(5). However, the use of molten gold is not favoured by industry, owing to its high cost, cross-contamination and potential issues of process control and scalability. Copper foils might be suitable for roll-to-roll processes, but are unlikely to be compatible with advanced microelectronic fabrication on wafers. Thus, a reliable way of growing single-crystal hBN films directly on wafers would contribute to the broad adoption of 2D layered materials in industry. Previous attempts to grow hBN monolayers on Cu (111) metals have failed to achieve mono-orientation, resulting in unwanted grain boundaries when the layers merge into films(6,7). Growing single-crystal hBN on such high-symmetry surface planes as Cu (111)(5,8) is widely believed to be impossible, even in theory. Nonetheless, here we report the successful epitaxial growth of single-crystal hBN monolayers on a Cu (111) thin film across a two-inch c-plane sapphire wafer. This surprising result is corroborated by our first-principles calculations, suggesting that the epitaxial growth is enhanced by lateral docking of hBN to Cu (111) steps, ensuring the mono-orientation of hBN monolayers. The obtained single-crystal hBN, incorporated as an interface layer between molybdenum disulfide and hafnium dioxide in a bottom-gate configuration, enhanced the electrical performance of transistors. This reliable approach to producing wafer-scale single-crystal hBN paves the way to future 2D electronics.


  
Unraveling the origin of chirality from plasmonic nanoparticle-protein complexes 期刊论文
SCIENCE, 2019, 365 (6460) : 1475-+
作者:  Zhang, Qingfeng;  Hernandez, Taylor;  Smith, Kyle W.;  Jebeli, Seyyed Ali Hosseini;  Dai, Alan X.;  Warning, Lauren;  Baiyasi, Rashad;  McCarthy, Lauren A.;  Guo, Hua;  Chen, Dong-Hua;  Dionne, Jennifer A.;  Landes, Christy F.;  Link, Stephan
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
Lacteal junction zippering protects against diet-induced obesity 期刊论文
SCIENCE, 2018, 361 (6402) : 599-603
作者:  Zhang, Feng;  Zarkada, Georgia;  Han, Jinah;  Li, Jinyu;  Dubrac, Alexandre;  Ola, Roxana;  Genet, Gael;  Boye, Kevin;  Michon, Pauline;  Kunzel, Steffen E.;  Camporez, Joao Paulo;  Singh, Abhishek K.;  Fong, Guo-Hua;  Simons, Michael;  Tso, Patrick;  Fernandez-Hernando, Carlos;  Shulman, Gerald I.;  Sessa, William C.;  Eichmann, Anne
收藏  |  浏览/下载:13/0  |  提交时间:2019/11/27
河西走廊荒漠区典型一年生草本植物繁殖物候对小降水事件的响应机制 项目
项目编号:41701045; 经费:220000(CNY); 起止日期:2018 / dc_date_end
项目负责人:  王国华
收藏  |  浏览/下载:0/0  |  提交时间:2019/11/27
乡村旅游社区恢复力的形成机制研究:行动者网络理论视角 项目
项目编号:41701144; 经费:260000(CNY); 起止日期:2018 / dc_date_end
项目负责人:  郭华
收藏  |  浏览/下载:2/0  |  提交时间:2019/11/27
在线研究华南背景地区粒径和混合状态对黑碳云清除效率的影响机制 项目
项目编号:41775124; 经费:680000(CNY); 起止日期:2018 / dc_date_end
项目负责人:  张国华
收藏  |  浏览/下载:1/0  |  提交时间:2019/11/27
Encoding of vinylidene isomerization in its anion photoelectron spectrum 期刊论文
SCIENCE, 2017, 358 (6361) : 336-339
作者:  DeVine, Jessalyn A.;  Weichman, Marissa L.;  Laws, Benjamin;  Chang, Jing;  Babin, Mark C.;  Balerdi, Garikoitz;  Xie, Changjian;  Malbon, Christopher L.;  Lineberger, W. Carl;  Yarkony, David R.;  Field, Robert W.;  Gibson, Stephen T.;  Ma, Jianyi;  Guo, Hua;  Neumark, Daniel M.
收藏  |  浏览/下载:5/0  |  提交时间:2019/11/27
虎纹蛙温度诱导性别逆转的生理和分子基础 项目
项目编号:31500308; 经费:200000(CNY); 起止日期:2016 / dc_date_end
项目负责人:  丁国骅
收藏  |  浏览/下载:0/0  |  提交时间:2019/04/11