SEM images of (a) Ti3AlC2, (b) Ti3C2TX-24, (c) Ti3C2TX-30, (d)

SEM images of (a) Ti3AlC2, (b) Ti3C2TX-24, (c) Ti3C2TX-30, (d)

4.6
(360)
Write Review
More
$ 13.00
Add to Cart
In stock
Description

SEM images of (a) Ti3AlC2, (b) multilayer Ti3C2Tx, (d) Cu-BTC, (e) and

2D Ti3AlC2 and Ti3C2 nanosheets: Excellent optical limiting materials for laser protection - ScienceDirect

Ultrathin Ti3C2Tx (MXene) Nanosheet-Wrapped NiSe2 Octahedral Crystal for Enhanced Supercapacitor Performance and Synergetic Electrocatalytic Water Splitting

Constructing MXene Electrodes to Enhance Solar Technologies

Two-dimensional Ti3C2Tx MXene promotes electrophysiological maturation of neural circuits, Journal of Nanobiotechnology

Scanning electron microscope (SEM) image of a) the Ti3AlC2 (MAX phase)

Printing‐Scalable Ti3C2Tx MXene‐Decorated Janus Separator with Expedited Zn2+ Flux toward Stabilized Zn Anodes - Su - 2022 - Advanced Functional Materials - Wiley Online Library

Effect of Ti3AlC2 precursor and processing conditions on microwave absorption performance of resultant Ti3C2Tx MXene

a) FTIR spectra, (b) High-resolution XPS spectra of O 1s, (c) Table of

High-temperature stability in air of Ti3C2Tx MXene-based composite with extracted bentonite

Deposition of hydrophilic Ti3C2Tx on a superhydrophobic ZnO nanorod array for improved surface-enhanced raman scattering performance, Journal of Nanobiotechnology

a) Transient photocurrent responses, (b) EIS Nyquist plots, (c) PL

PDF] Effect of Ti3AlC2 MAX Phase on Structure and Properties of Resultant Ti3C2Tx MXene

a) FECO of each electrocatalyst at various potentials, (b) j tot and j

Lixia YANG, Lanzhou Jiaotong University, Lanzhou, School of Automation and Electrical Engineering