mpi_CPfS's profile picture. Our #science connects #chemistry and #physics. We conduct #research to discover and understand new materials.

Max Planck Institute CPfS - TQC

@mpi_CPfS

Our #science connects #chemistry and #physics. We conduct #research to discover and understand new materials.

Curious about Quantum Materials? Explore IMPRS-CPQM projects & apply for our #PhD positions. Deadline: 30 Nov 2025 → imprs-cpqm.mpg.de/apply-now #WeAreHiring #MaxPlanck #joboffer

mpi_CPfS's tweet image. Curious about Quantum Materials? Explore IMPRS-CPQM projects & apply for our #PhD positions. 
Deadline: 30 Nov 2025 → imprs-cpqm.mpg.de/apply-now 

#WeAreHiring #MaxPlanck #joboffer

Congrats to the 2025 #ForWomenInScience Laureates! Special cheers to our Director, @claudia_felser, honored for her work on topological quantum materials & advocacy for women in STEM. 👏 Baker, Wang, Felser, Dova & Finlayson-Pitts — true role models! @UNESCO @FondationLOreal

mpi_CPfS's tweet image. Congrats to the 2025 #ForWomenInScience Laureates!
Special cheers to our Director, @claudia_felser, honored for her work on topological quantum materials & advocacy for women in STEM.
👏 Baker, Wang, Felser, Dova & Finlayson-Pitts — true role models!
@UNESCO  @FondationLOreal

Max Planck Institute CPfS - TQC さんがリポスト

Applying a magnetic field to the topological material Bi88Sb12 enhances the Seebeck coefficient, resulting in a high thermoelectric figure of merit zT of 1.7 at 180 K and 0.7 T. @claudia_felser @mpi_CPfS nature.com/articles/s4156…


Max Planck Institute CPfS - TQC さんがリポスト

Xia Wang, @BinghaiYan @claudia_felser and colleagues @mpi_CPfS use topological semimetals with intrinsic chirality to control spin in oxygen evolution catalysts and explore the role of spin-orbit coupling in determining activity. buff.ly/3OxAlNQ

NatureEnergyJnl's tweet image. Xia Wang, @BinghaiYan @claudia_felser and colleagues @mpi_CPfS use topological semimetals with intrinsic chirality to control spin in oxygen evolution catalysts and explore the role of spin-orbit coupling in determining activity. buff.ly/3OxAlNQ

Max Planck Institute CPfS - TQC さんがリポスト

The 2024 Von Hippel Award recipient & director at @mpi_CPfS, @claudia_felser joins us to talk about her work connecting some of the universe’s biggest mysteries to chirality & topological quantum materials. @Materials_MRS #F24MRS youtu.be/pMS0paT1VmU

WebsEdgeScience's tweet image. The 2024 Von Hippel Award recipient & director at @mpi_CPfS, @claudia_felser joins us to talk about her work connecting some of the universe’s biggest mysteries to chirality & topological quantum materials. @Materials_MRS #F24MRS youtu.be/pMS0paT1VmU

Max Planck Institute CPfS - TQC さんがリポスト

In our recent article, we observed Giant Topological Hall Effect and Colossal Magnetoresistance in Heusler Ferromagnet near Room Temperature - Yanda - Advanced Materials - Wiley Online Library onlinelibrary.wiley.com/doi/full/10.10… @WileyGlobal @AdvPortfolio @mpi_CPfS @claudia_felser @cgsbond


Claudia Felser receives the #VonHippelAward 🏆 and is named a 2024 Clarivate Highly Cited Researcher! Her groundbreaking work in topological #quantumMaterials reshapes condensed matter science. Congratulations on this well-deserved recognition! 👏 cpfs.mpg.de/3694669/202411…


🌊🔋Breakthrough in Clean #hydrogen - Scientists have developed spin-powered chiral crystals that boost water splitting efficiency by 200x. This leap in renewable energy tech brings us closer to a #CleanEnergy future. 🌍 cpfs.mpg.de/3695333/202411…

mpi_CPfS's tweet image. 🌊🔋Breakthrough in Clean #hydrogen  - Scientists have developed spin-powered chiral crystals that boost water splitting efficiency by 200x. This leap in renewable energy tech brings us closer to a #CleanEnergy future. 🌍 
cpfs.mpg.de/3695333/202411…

#WeAreHiring#PhD positions available 🙌 Are you excited about Quantum Materials Research? We are looking for highly motivated PhD students! 📷 imprs-cpqm.mpg.de/apply-now Apply by 30 November 2024 @maxplanckcareer #joboffer #maxplanck #imprs

mpi_CPfS's tweet image. #WeAreHiring – #PhD positions available 🙌  Are you excited about Quantum Materials Research?  We are looking for highly motivated PhD students! 📷 imprs-cpqm.mpg.de/apply-now
Apply by 30 November 2024
@maxplanckcareer

#joboffer #maxplanck #imprs

Max Planck Institute CPfS - TQC さんがリポスト

Orbital Angular Momentum behaves like a monopole in topological chiral metals and it can be controlled through the structural handedness. @DIPCehu @mpi_CPfS @UShbrooke @IQ_USherbrooke nature.com/articles/s4156…


Max Planck Institute CPfS - TQC さんがリポスト

Nice work by Robin Guehne on ScV6Sn6 Kagome, revealing orbital selective modulations of the local density of states. @mpi_CPfS @DIPCehu @claudia_felser nature.com/articles/s4146…


Max Planck Institute CPfS - TQC さんがリポスト

Excited to share a groundbreaking paper showing 2D and 3D magnetic imaging of samples too thick to be measured until now. From spintronics to paleomagnetism. Happy that @HZBde could make a small contribution to the work lead by the Spin3D group @mpi_CPfS physics.aps.org/articles/v17/s…


Max Planck Institute CPfS - TQC さんがリポスト

Another big paper from Chiara Devescovi and Antonio Morales on axion topology in photonic crytals, co-supervised with @garciaetxarri . More to come soon ;) @DIPCehu @mpi_CPfS nature.com/articles/s4146…


Max Planck Institute CPfS - TQC さんがリポスト

Structural Analysis and Redox Properties of Oxygen-“Breathing” A(Mn1–xCux)O3 (A = La, Pr) Perovskites By Annette Trunschke et al. @fhi_mpg_de @mpicec_press @mpi_CPfS Read the paper 👉 go.acs.org/aod

ChemMater's tweet image. Structural Analysis and Redox Properties of Oxygen-“Breathing” A(Mn1–xCux)O3 (A = La, Pr) Perovskites

By Annette Trunschke et al. @fhi_mpg_de @mpicec_press @mpi_CPfS 

Read the paper 👉 go.acs.org/aod

Max Planck Institute CPfS - TQC さんがリポスト

New Nanocomposites Derived from Cation-Nonstoichiometric Bax(Co, Fe, Zr, Y)O3−δ as Efficient Electrocatalysts for Water Oxidation in Alkaline Solution By Xiaomin Xu, Zongping Shao et al. @CurtinUni @HongKongPolyU @mpi_CPfS Read the paper 👉 go.acs.org/ak7

ACSMatLett's tweet image. New Nanocomposites Derived from Cation-Nonstoichiometric Bax(Co, Fe, Zr, Y)O3−δ as Efficient Electrocatalysts for Water Oxidation in Alkaline Solution

By Xiaomin Xu, Zongping Shao et al. @CurtinUni @HongKongPolyU @mpi_CPfS 

Read the paper 👉 go.acs.org/ak7

Max Planck Institute CPfS - TQC さんがリポスト

Many body physics in heavy fermions. Hybridization of the electrons energy scheme in a sample made of YbPtBi, ytterbium (Yb), lead (Pt), and bismuth (Bi) under controlled symmetry-breaking and uniaxial pressure. YbPtBi has been hypothesized to possess one of the highest…

Dragonmaurizio's tweet image. Many body physics in heavy fermions. Hybridization of the electrons energy scheme in a sample made of YbPtBi, ytterbium (Yb), lead (Pt), and bismuth (Bi) under controlled symmetry-breaking and uniaxial pressure. YbPtBi has been hypothesized to possess one of the highest…

Max Planck Institute CPfS - TQC さんがリポスト

Just out in @NatureNano: @NCCRbioinspired article from @AMI_Physics and @BodoWilts in collaboration with @psich_en, @GroupWiesner, @mpi_CPfS, @TohokuUniPR - Unlocking the secrets of nanoscale networks bit.ly/NCCR_nanotomog… #physics #nanofabrication

NCCRbioinspired's tweet image. Just out in @NatureNano: @NCCRbioinspired article from @AMI_Physics and @BodoWilts in collaboration with @psich_en, @GroupWiesner, @mpi_CPfS, @TohokuUniPR - Unlocking the secrets of nanoscale networks bit.ly/NCCR_nanotomog… #physics #nanofabrication

Max Planck Institute CPfS - TQC さんがリポスト

In our recent paper, we observed Giant Room‐Temperature Topological Hall Effect in a Square‐Net Ferromagnet LaMn2Ge2 published in @advancematerial @WileyGlobal onlinelibrary.wiley.com/doi/10.1002/ad… @claudia_felser @cgsbond @Gvamvim @mpi_CPfS @chm_iiserb @iiserbhopal


Loading...

Something went wrong.


Something went wrong.