Fig. 1 Schematic diagram of the atomic-level structure engineering of ZnxCo1−xO for high-rate intercalation pseudocapacitance applications. Schematic diagram.

Slides:



Advertisements
Similar presentations
Fig. 2 Transport properties of a BP transistor at low temperature.
Advertisements

Fig. 4 Ballistic simulation of BP FETs.
Fig. 2 Global production, use, and fate of polymer resins, synthetic fibers, and additives (1950 to 2015; in million metric tons). Global production, use,
Vibrational spectra of medieval human bones (Leopoli-Cencelle, Italy)
Fig. 3 Projected gains in MCP.
Fig. 5 Thermal conductivity of n-type ZrCoBi-based half-Heuslers.
Fig. 1 Map of water stress and shale plays.
Fig. 1 Examples of experimental stimuli and behavioral performance.
Fig. 3 Saturation velocity of BP FETs.
Fig. 1 Wireless, battery-free neural cuff for programmable pharmacology and optogenetics. Wireless, battery-free neural cuff for programmable pharmacology.
Fig. 4 Resynthesized complex boronic acid derivatives based on different scaffolds on a millimole scale and corresponding yields. Resynthesized complex.
Fig. 6 Comparison of properties of water models.
Fig. 1 Mean and median RCR (Relative Citation Ratio) of Roadmap Epigenomics Program research articles for each year. Mean and median RCR (Relative Citation.
Fig. 2 Reference-fixing experiment, results.
Fig. 4 Latency of CsLoc during testing.
Fig. 3 Scan rate effects on the layer edge current.
Fig. 3 Rotation experiment, setup.
Fig. 1 Product lifetime distributions for the eight industrial use sectors plotted as log-normal probability distribution functions (PDF). Product lifetime.
Fig. 5 Computational investigations of oxygen ion diffusion and electrical conduction in ZnxCo1−xO. Computational investigations of oxygen ion diffusion.
Fig. 1 Schematic illustration of the preparation and potential application of FMSMs. Schematic illustration of the preparation and potential application.
Fig. 1 Parameterization and temporal distribution of carbon isotopic events in the database. Parameterization and temporal distribution of carbon isotopic.
Fig. 1 Distribution of total and fake news shares.
Fig. 2 2D QWs of different propagation lengths.
Fig. 1 Structure of L10-IrMn.
Fig. 3 Magnetic and transport properties of ACoO3 (A = Ca, Sr).
Fig. 1 Schematic illustration and atomic-scale rendering of a silica AFM tip sliding up and down a single-layer graphene step edge on an atomically flat.
Fig. 1 Measurement setup and crystal structure.
Fig. 4 DFT ωB97x/def2-TZVPP atomic charges on the sulfur atom of substituted thioaldehyde and AIMNet prediction with a different number of iterative passes.
Fig. 1 Histograms of the number of first messages received by men and women in each of our four cities. Histograms of the number of first messages received.
Fig. 5 Schematic phase diagrams of Ising spin systems and Mott transition systems. Schematic phase diagrams of Ising spin systems and Mott transition systems.
Characteristics of ultrathin single-crystalline semiconductor films
Fig. 4 OER performance of ACoO3 (A = Ca, Sr) in alkaline solutions with different pH. OER performance of ACoO3 (A = Ca, Sr) in alkaline solutions with.
Fig. 1 Average contribution (million metric tons) of seafood-producing sectors, 2009–2014. Average contribution (million metric tons) of seafood-producing.
Fig. 4 Two-color photoinitiation and photoinhibition enable controllable, far-surface patterning of complex 3D structures. Two-color photoinitiation and.
Fig. 4 Praying Prophet by Lorenzo Monaco: Mapping lake pigments and associated substrate. Praying Prophet by Lorenzo Monaco: Mapping lake pigments and.
Fig. 4 Short-channel 2L-OFET for cutoff frequency measurement.
Fig. 2 Characterization of ZnxCo1−xO NRs.
Fig. 3 Production of protein and Fe(II) at the end of growth correlated with increasing concentrations of ferrihydrite in the media that contained 0.2.
Fig. 2 Schematic drawings of Göbekli Tepe skulls.
Fig. 4 SPICE simulation of stochasticity.
Fig. 1 Size fractions of MPPs in different fertilizers.
Fig. 4 Projected [CO2]-induced deficits in protein and minerals (Fe and Zn) and cumulative changes in vitamin B and cumulative changes in vitamin E derived.
Fig. 4 Schematic diagram for achieving URTP in G-doped PVA films and irradiation time-dependent 1H NMR spectra of the PVA-100-3mg film. Schematic diagram.
Fig. 1 Experiment description.
Fig. 5 Comparison of the liquid products generated from photocatalytic CO2 reduction reactions (CO2RR) and CO reduction reactions (CORR) on two catalysts.
Schematic of the proposed brain-controlled assistive hearing device
Fig. 1 Location of the Jirzankal Cemetery.
Fig. 4 Map of δ18OVSMOW in groundwaters of the British Isles (left) and Strontium (87Sr/86Sr) biosphere map of Great Britain (right). Map of δ18OVSMOW.
Fig. 4 CO2 emission changes triggered by the JJJ clean air policy.
Fig. 2 Simulations of possible doping positions and band structures.
Multiplexed four- and eight-channel devices for rapid processing
Fig. 3 Electronic conductivity studies.
Fig. 1 Schematic depiction of a paradigm for rapid and guided discovery of materials through iterative combination of ML with HiTp experimentation. Schematic.
Fig. 4 Mapping of abundance of the most dominant bacterial and archaeal phyla across France. Mapping of abundance of the most dominant bacterial and archaeal.
Fig. 4 Spatial mapping of the distribution and intensity of industrial fishing catch. Spatial mapping of the distribution and intensity of industrial fishing.
Fig. 1 Chemical structures of the bioconjugates.
Fig. 4 Single-particle contact angle measurements.
Fig. 3 Performance of the generative model G, with and without stack-augmented memory. Performance of the generative model G, with and without stack-augmented.
Fig. 4 Behavior of resistance peak near density nm = 5.
Fig. 2 Comparison between the different reflective metasurface proposals when θi = 0° and θr = 70°. Comparison between the different reflective metasurface.
Fig. 1 Design principle and SEM characterization of super-origami DNA nanostructures with n-tuples. Design principle and SEM characterization of super-origami.
Fig. 4 Analysis of charge storage mechanism in ZnxCo1−xO NRs.
Fig. 2 Daily TNC pickups and drop-offs for an average Wednesday in fall 2016 (1). Daily TNC pickups and drop-offs for an average Wednesday in fall 2016.
Fig. 1 Architected materials fabrication by projection microstereolithography–based additive manufacturing using poly(ethylene glycol) diacrylate resin.
Fig. 3 Rural-urban gap of per capita income in China from 1978 to Rural-urban gap of per capita income in China from 1978 to The income of.
Fig. 4 Effects of individual picosecond and microsecond pulses.
Fig. 3 Calculated electronic structure of ZrCoBi.
Fig. 5 Toward integrated land-ocean development: Contribution of GMP to the GDP, 1978–2017. Toward integrated land-ocean development: Contribution of GMP.
Fig. 4 Electrochemical mechanism studies.
Fig. 1 Completely derived from natural wood, nanowood with hierarchically aligned cellulose nanofibrils can be used as an anisotropic super thermal insulator.
Presentation transcript:

Fig. 1 Schematic diagram of the atomic-level structure engineering of ZnxCo1−xO for high-rate intercalation pseudocapacitance applications. Schematic diagram of the atomic-level structure engineering of ZnxCo1−xO for high-rate intercalation pseudocapacitance applications. Arrays of single-crystal ZnxCo1−xO nanorods (NRs) are in situ fabricated on a conductive substrate to ensure quick charge transportation. For every single ZnxCo1−xO NR, the uniform doping of Zn ions in the oxide host assures fast electrical conduction, while the creation of O vacancy–rich {111} nanofacets enables easy access of oxygen ions into the oxide host with a low energy barrier. Tao Ling et al. Sci Adv 2018;4:eaau6261 Copyright © 2018 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC).