in situ tunable pillaring of compact and high-density

On using Rayleigh scattering for in

Rayleigh scattering for spectral calibration of Thomson diagnostics 3 700 800 900 1000 1100 wavelength [nm] 5 10 15 20 25 30 pulse energy [mJ] 1064 FIG. 3. Dependence of the OPO pulse energy on the wave-length. The black line is an average of 40 pulses for

ATC Orion Series Sputtering Systems

They feature tunable isolation chimneys with gas injection and flip-top shutters to accommodate compact spaces and custom chimney designs. The basic magnetron/ cathode assembly is identical to the unique AJA A300 Series modular magnetrons which are used in the flagship ATC systems.

Optical Biomedical Sensors

The optical biomedical sensor industry has grown enormously over the past few years and is expected to grow more in the forthcoming days because of the extensive need for point-of-care testing devices. Researchers all over the world are working on the implementation of highly sensitive, reliable, portable, and inexpensive biomedical appliances, which can revolutionize this market. Optical

High-Rate Nanostructured Pyrite Cathodes Enabled by Fluorinated Surface and Compact Grain Stacking via Sulfuration of Ionic Liquid Coated Fluorides. ACS Nano, 12, 12444-12455, 2018 . [43] J. Tian, D. P. Cao, X. J. Zhou, J. L. Hu, M. S. Huang, and C. L. Li *, High-Capacity Mg–Organic Batteries Based on Nanostructured Rhodizonate Salts Activated by Mg-Li Dual-Salt Electrolyte .

Monitoring temperature in high enthalpy arc heated plasma flows using tunable

Monitoring temperature in high enthalpy arc-heated plasma flows using tunable diode laser absorption spectroscopy Marcel Nations Martin1, Leyen S. Chang2, Jay B. Jeffries3, and Ronald K. Hanson4 Stanford University, Stanford, California 94305-3032 5678

Prabhas V. Moghe

2003- Project Director, In Situ Profiling of Cell Dynamics on Polymeric Materials, NIH-Sponsored P41 Center at Rutgers, "Integrated Technologies for Polymeric Biomaterials". 2001-3 Undergraduate Program Director, Department of Biomedical Engineering, Rutgers University, Piscataway, NJ.

(PDF) Graphene's Electronic Properties

Researchers in Germany and Spain have created a transistor-like device that uses a small voltage to control the strength and frequency of electronic signals transmitted through graphene. [48] Contrary to what is believed, monolayer graphene (a sheet

A review of low

Recent high-power laser technologies are creating potential for new aspects of laser acceleration and compact quantum beam sources with controlled targets. Low-density porous materials, commonly known as foams, are promising as high-efficiency targets for laser plasma experiments that create states of matter at high-energy density.

Tunable/Reconfigurable Metasurfaces: Physics and

Metasurfaces, ultrathin metamaterials constructed by planar meta-atoms with tailored electromagnetic (EM) responses, have attracted tremendous attention due to their exotic abilities to freely control EM waves. With active elements incorporated into metasurface designs, one can realize tunable and/or reconfigurable metadevices with functionalities controlled by external stimuli, opening a new

Decorating Graphene Oxide with Ionic Liquid

In situ tunable pillaring of compact and high-density graphite fluoride with pseudocapacitive diamines for supercapacitors with combined predominance in gravimetric and volumetric performances. Journal of Materials Chemistry A 2019, 7 (7), 3353-3365.

by Year: 2016

Nitrogen deficiency and high oxygen coverage are considered to be the origins of the high interface trap density in the MOSFET fabricated by dry etching. (C) 2016 The Japan Society of Applied Physics Lin S, Wang M, Sang F, Tao M, Wen CP, Xie B, Yu M, Wang J, Hao Y, Wu W, et al.

Phys. Rev. Applied 3, 054010 (2015)

We report on highly tunable radio-frequency (rf) characteristics of a low-loss and compact three-dimensional (3D) metamaterial made of superconducting thin-film spiral resonators. The rf transmission spectrum of a single element of the metamaterial shows a fundamental resonance peak at ∼ 24.95 MHz that shifts to a 25% smaller frequency and becomes degenerate when a 3D array of such elements

Phys. Rev. Applied 3, 054010 (2015)

We report on highly tunable radio-frequency (rf) characteristics of a low-loss and compact three-dimensional (3D) metamaterial made of superconducting thin-film spiral resonators. The rf transmission spectrum of a single element of the metamaterial shows a fundamental resonance peak at ∼ 24.95 MHz that shifts to a 25% smaller frequency and becomes degenerate when a 3D array of such elements

In situ microscopy of the self

In situ microscopy of the self-assembly of branched nanocrystals in solution Eli Sutter University of Nebraska-Lincoln, esutterunl.edu are tunable and may even be reconfigurable in real time8. Besides technological interest, research on crystallization of

In

2020/5/1Galvanostatic charge/discharge tests were carried out on the in-situ pillared MXene in the voltage window of 0.01–1 V using a current density of 20 mA g −1 (). Fig. 2a contains a schematic illustrating the in-situ pillaring process whereby CTA + is intercalated between the Ti 3 C 2 layers on the first discharge cycle inside the Zn-ion hybrid capacitor.

Matthew Derry

Such PISA syntheses produce sterically-stabilized nanoparticles in situ and can be performed at relatively high copolymer concentrations (up to 50 wt. %). This PGMA–PBzMA formulation is known to form only spherical nanoparticles in water using aqueous emulsion polymerization Macromolecule, 2014, 47, 5613–5623), which makes it an ideal model system for exploring new characterization methods.

A 3D

Fig. 1A illustrates the schematic diagram of SLA printing for molecular ImClO 4 ferroelectrics with high dimensional accuracy, structural complexity, and high throughput. The molecular ferroelectric ImClO 4 crystal is water-soluble and can mix with photopolymerizable material to achieve transparent printable precursor ink solution with a viscosity of 1.70 cSt ( SI Appendix, Table S1 and Fig

Tunable structure and dynamics of solid electrolyte

2020/9/1Before the in situ study, the Li foil was carefully treated to remove the oxidized products on its surface. The inset of Fig. 1b presents the fresh and flat Li sample after the pretreatment.In the electrolyte without LiNO 3, NPs (marked with arrows) nucleate along with the formation of amorphous deposits (marked with curves) in 15 min, and expand over time (Fig. 1b–c).

by Year: 2016

Nitrogen deficiency and high oxygen coverage are considered to be the origins of the high interface trap density in the MOSFET fabricated by dry etching. (C) 2016 The Japan Society of Applied Physics Lin S, Wang M, Sang F, Tao M, Wen CP, Xie B, Yu M, Wang J, Hao Y, Wu W, et al.

Zhenguo Yao, Qingping Wu, Keyi Chen, Jianjun Liu*, and Chilin Li*, "Shallow-layer pillaring of a conductive polymer in monolithic grains to drive superior zinc storage via a cascading effect". Yao Zhou #, Erhong Song #, Wei Chen #, Carlo U. Segre, Jiadong Zhou, Yung-Chang Lin, Chao Zhu, Ruguang Ma, Pan Liu, Shufen Chu, Tiju Thomas, Minghui Yang, Qian Liu, Kazu Suenaga Zheng Liu*, Jianjun

Journal of Physics D: Applied Physics, Volume 54, Number

At present, various architectures that are suited to high temperature and high-radiation environments are still under investigation for power electronics applications. Recently, the deep-depletion diamond metal–oxide–semiconductor FET (D3MOSFET) concept has been introduced and demonstrated to be a good candidate for designing efficient diamond MOSFETs.

High-Rate Nanostructured Pyrite Cathodes Enabled by Fluorinated Surface and Compact Grain Stacking via Sulfuration of Ionic Liquid Coated Fluorides. ACS Nano, 12, 12444-12455, 2018 . [43] J. Tian, D. P. Cao, X. J. Zhou, J. L. Hu, M. S. Huang, and C. L. Li *, High-Capacity Mg–Organic Batteries Based on Nanostructured Rhodizonate Salts Activated by Mg-Li Dual-Salt Electrolyte .

Printing High‐Efficiency Perovskite Solar Cells in

At high gas‐blowing speeds, the solvent evaporates quickly, and a high density of nuclei is formed. The nuclei subsequently grow into grains hundreds of nanometers in size. Thus, a systematic trend for improving film morphology was observed: the increase in air‐knife blowing velocity results in an increased PSC performance, as shown in Figure 2b .

An Overview of Communications Technology and Development

g Ng a S ar r a o An Overview of Communications Technology and Development Efforts for 2015 SBIR Phase I NASA/TM 2017-219459 May 2017 Available from Level of Review: This material has been technically reviewed by technical management. NASA STI

Small: Vol 16, No 25

In article number 2001265, Dong Su, Huiming Ji, Ji Liang, and co‐workers fabricate a flexible film using pre‐assembled graphene/SnS 2 microblocks as parents bridged by graphene. The film possesses a 3D‐porous graphene framework and a structure of SnS 2 nanocrystals chemically bonded on graphene, which integrates fast ion/electron diffusion with robust utilization of SnS 2, thus leading

VALIDATION OF SCIAMACHY WATER VAPOR AND METHANE PROFILES BY BALLON

The lightweight near-infrared tunable diode laser spectrometer CHILD (Compact High-altitude In-situ Laser Diode spectrometer) was flown piggyback on the TRIPLE gondola for a SCIAMACHY validation flight during the ASA fall 2002 Envisat Validation4 and H2

Development and Application of a Compact, Tunable,

Development and Application of a Compact, Tunable, Solid-State Airborne Ozone Lidar System for Boundary Langley Research Center (e.g., Browell et al. 1983), uses high-power tunable dye lasers for the lidar transmitter. The resulting system is extremely

Issue: Matter

High-integration-density ferroelectric devices require the stabilization of ferroelectric polarization in small volumes. Here, atomic-resolution transmission electron microscopy imaging reveals that twinning in individual colloidal nanocrystals of HfO 2 leads to the formation of multiple polarization orders at twin boundaries, even without symmetry breaking.

Projects

The conflicting requirements of centimeter scale travel, high bandwidth, low stress concentration, and adequate safety factor make it challenging to design a compact flexure-based positioning stage. Existing designs demonstrate high accuracy and resolution, but acknowledge that large motion ranges are achieved at the cost of low resonant frequency.

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