#MoTe2
#OEA_highlight Ultra-sensitive multi-band infrared polarization photodetector based on 1T'-MoTe2/2H-MoTe2 van der Waals heterostructure doi.org/10.29026/oea... by Prof. #Lianqing_Zhu #Beijing_Information_Science_and_Technology_University #heterojunction #MoTe2 #polarization #shortwave #2D_materials
April 7, 2026 at 9:12 AM
"Ultra-sensitive multi-band infrared polarization photodetector based on 1T'-MoTe2/2H-MoTe2 van der Waals heterostructure" is featured on PubCard @optoelectronadv.bsky.social Full-length paper available at oejournal.org/oea/article/...
April 2, 2026 at 1:52 AM
"Ultra-sensitive multi-band infrared polarization photodetector based on 1T'-MoTe2/2H-MoTe2 van der Waals heterostructure", published in Opto-Electronic Advances @optoelectronadv.bsky.social View original article www.oejournal.org/oea/article/...
April 2, 2026 at 1:45 AM
Nature research paper: Signatures of fractional charges via anyon–trions in twisted MoTe2

go.nature.com/4kmRdpR
Signatures of fractional charges via anyon–trions in twisted MoTe2 - Nature
Fractionally charged excitations at zero magnetic field in twisted MoTe2 bilayers, a recently discovered fractional quantum anomalous Hall system, are observed via anyon-trions, excitonic complexes formed by binding a trion to a fractional charge.
go.nature.com
February 6, 2026 at 11:23 AM
Nature research paper: Optical control over topological Chern number in moiré materials

go.nature.com/4amhKzS
Optical control over topological Chern number in moiré materials - Nature
Optical spin orientation of itinerant ferromagnets in twisted MoTe2 homobilayers is demonstrated, enabling control of topological Chern numbers with circularly polarized light.
go.nature.com
January 30, 2026 at 12:15 PM
#Nature Hidden states and dynamics of fractional fillings in twisted MoTe2 bilayers https://www.nature.com/articles/s41586-025-08954-8 nearly 20 hidden states at fractional fillings that are absent in static optical sensing or transport measurements shown by transient optical spectroscopy.
April 3, 2025 at 6:00 PM
📢 From semiclassical scaling to quantum breakdown, our analytic formula matches the Lifshitz metal-insulator transition in MoTe2/WSe2 experiments and predicts a universal critical resistance RL=2pi h/e^2.
🔗 Harry Tomlins & JMT, PRL 135, 116302 (2025) doi.org/10.1103/kc4r...
@kingsnmes.bsky.social
September 9, 2025 at 9:14 AM
Excited to share our latest work in JACS!! We show that step edge defects have nanoscale impact on electronic structure in semiconducting TMDC electrocatalysts. Congrats to first-author Kenneth Ortiz Chua! pubs.acs.org/doi/10.1021/...
#SECCM #electrochemistry ⚡️🧪
Step Edge Defects Have Nanoscale Impact on the Electronic Structure in Semiconducting Transition Metal Dichalcogenide Electrocatalysts
This work uses MoTe2 single crystals to address the challenge in heterogeneous catalysis of identifying active sites and determining the electronic factors responsible for catalytic activity. We find ...
pubs.acs.org
January 28, 2025 at 9:11 PM
Design of iron-based metal-organic framework (Fe-MOF) and molybdenum telluride (MoTe2) nanohybrids for enhanced energy storage and hydrogen evolution reactions https://www.sciencedirect.com/science/article/pii/S1387700324017817
December 28, 2024 at 4:13 PM
Hidden states and dynamics of fractional fillings in twisted MoTe2 bilayers
Hidden states and dynamics of fractional fillings in twisted MoTe2 bilayers
Nature, Published online: 03 April 2025; doi:10.1038/s41586-025-08954-8Hidden states and dynamics of fractional fillings in twisted MoTe2 bilayers
dlvr.it
April 5, 2025 at 6:53 AM
#Monolayers are cool, but not always better. In journals.aps.org/prl/abstract... we show that MoTe2-#bilayers have a brighter telecom-IR emission than monolayers, when stuck in an optical cavity. This makes them interersting for telecom-wavelength single photon sources.
journals.aps.org
February 25, 2025 at 7:03 AM
#nature Hidden states and dynamics of fractional fillings in twisted MoTe2 bilayers https://www.nature.com/articles/s41586-025-08954-8 nearly 20 hidden states at fractional fillings that are absent in static optical sensing or transport measurements shown by transient optical spectroscopy.
April 3, 2025 at 6:00 PM
レグルスの箱庭をどうぞ クリアまでの時間は忘れました
sgst.x.2nt.com/mote2.htm
403 Error - 2NTホームページ
sgst.x.2nt.com
November 23, 2024 at 12:43 PM
New #ICMABResearch published in The Journal of Physical Chemistry Letters!

📌Giant Thermal Switching via Phase Transition in MoTe2

icmab.es/giant-therma...

📜Read the paper here: pubs.acs.org/doi/10.1021/...
March 5, 2026 at 7:02 AM
Now online in journal American Physical Society: 'Unoccupied bands in the molybdenum dichalcogenides MoS2, MoSe2, and MoTe2' by J. Jobst, E.E. Krasovskii, R. Ribeiro, T. A. de Jong, C.R. Dean, R.M. Tromp and @sensevdmolen.bsky.social
DOI: doi.org/10.1103/8hvv...
September 26, 2025 at 8:39 AM
Mukherjee, Sharma, Bhat, Kander, Singh, Das: Resonant Tunneling in Tri-layer 2H-MoTe2 grown by Molecular Beam Epitaxy Coupled with layered WSe2 carrier Reservoir https://arxiv.org/abs/2506.00971 https://arxiv.org/pdf/2506.00971 https://arxiv.org/html/2506.00971
June 3, 2025 at 6:21 AM
📢 New #arXiv: The conductance at Lifshitz metal-insulator transitions in 2D is *universal*: e^2/(2pi h).
For the breakdown of one-parameter scaling in MoTe2/WSe2 moiré bilayers, relations to Mott & Anderson MITs, see
👉 arxiv.org/abs/2501.17616
@kingsnmes.bsky.social @fwf-at.bsky.social
January 30, 2025 at 10:19 AM
In monolayer MoTe2, the 1H-to-1T' phase change appears to unfold as a one-dimensional atomic “domino” chain reaction, not a collective shear, with a much lower energy barrier. doi.org/hb9mm5
Atomic 'domino effect' found to drive phase changes in a two-dimensional crystal
Phase transformations—in which a material changes from one crystal structure to another, thereby acquiring dramatically different properties—are ubiquitous in nature.
phys.org
July 6, 2026 at 9:00 PM
Low-Power Lasers Now Control Material Vibrations for Faster Electronics

Read more:
https://quantumzeitgeist.com/laser-control-material-vibrations/
Low-Power Lasers Now Control Material Vibrations For Faster Electronics
Inside a cryostat, a pulse of just 10 picowatts altered the behaviour of an ultrathin material. Previously, observing and controlling such atomic vibrations demanded laser intensities exceeding 10 gigawatts per square centimetre and battled overwhelming noise. Now, coherent phonons in few-layer 2H-MoTe2 respond to signals a million times weaker, opening new routes to manipulating materials with light.
quantumzeitgeist.com
March 21, 2026 at 9:45 PM
Md Tashfiq Bin Kashem, Hasib Md Abid Bin Farid: Device Engineering and Performance Optimization of Cu2NiGeS4 Thin-Film Solar Cells with In2S3/MoTe2 Charge-Selective Layers: A Computational Study https://arxiv.org/abs/2609.11755 https://arxiv.org/pdf/2609.11755 https://arxiv.org/html/2609.11755
September 11, 2026 at 6:52 AM
Device Engineering and Performance Optimization of Cu2NiGeS4 Thin-Film Solar Cells with In2S3/MoTe2 Charge-Selective Layers: A Computational Study
https://arxiv.org/pdf/2609.11755
Md Tashfiq Bin Kashem, Hasib Md Abid Bin Farid.
https://arxiv.org/abs/2609.11755
arXiv abstract link
arxiv.org
September 11, 2026 at 4:00 AM
Correlated topology and magnetism in twisted MoTe2 | Xiaodong Xu (Washington)
Kavli Institute for Theoretical Physics
youtu.be/tuJwsAYYOG4?...
Correlated topology and magnetism in twisted MoTe2 | Xiaodong Xu (Washington)
YouTube video by Kavli Institute for Theoretical Physics
youtu.be
September 9, 2026 at 3:44 AM
J. L. Costa, E. Santos, E. L. T. Fran\c{c}a, J. B. S. Mendes, A. Azevedo: Interfacial Spin-to-Charge Conversion in Sputtered MoTe2 Heterostructures Probed by Spin Pumping and Spin-Torque Ferr... https://arxiv.org/abs/2608.30953 https://arxiv.org/pdf/2608.30953 https://arxiv.org/html/2608.30953
September 1, 2026 at 6:52 AM