StranksLab

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StranksLab

StranksLab

@StranksLab

Research group @CEBcambridge @DeptofPhysics @Cambridge_Uni led by @SamStranks working on new photovoltaic, lighting & detector tech. Account student/postdoc run

Cambridge, England Bergabung Haziran 2017
223 Mengikuti5K Pengikut
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StranksLab
StranksLab@StranksLab·
We especially want to encourage applications from individuals in groups that are currently underrepresented in science. Cambridge, and science, are for everyone! 👩🏿‍💻👩🏻‍🦰👩🏻‍🔬👩🏽‍🦽👨🏻👩🏾‍🔧👨🏾‍🔬👱🏼‍♀️👩🏿‍🏫👩🏽‍🚀
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Xian Wei Chua
Xian Wei Chua@XianWeiChua·
A great experimental session with X-rays at the Diamond Light Source with @JonahMessinger and Dr Oliver Fox. Many thanks to Olly and the Diamond team for the tremendous assistance!
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Joel Jean
Joel Jean@joeljean9·
so excited to have Ashlee tell our story
Ashlee Vance@ashleevance

Big solar scoop this morning. @SwiftSolarPV is about to mount the U.S.'s last, best attempt to be a massive player in the solar industry. It has acquired a bunch of tech assets, IP and key people from Meyer Burger, the onetime Swiss/German solar giant. The old stuff will be paired with Swift's perovskite solar tech in a bid to try and outflank China's solar industry with more efficient, cheaper cells. We shall see. . . . corememory.com/p/the-last-cha…

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SMS Lab
SMS Lab@SMSLabnews·
Great couple of weeks at @DiamondLightSou carrying out experiments at the i07 GIWAXS beamline and ePSIC electron microscopy facility. 🔬 We are very grateful to the beamline teams for their support and to Diamond for their continued trust in our work.
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Xian Wei Chua
Xian Wei Chua@XianWeiChua·
Congrats to Dr Wenxin Mao and all co-authors on the latest publication in @J_A_C_S! We discuss how illumination can result in halide ions switching octahedral positions in 2D mixed-halide perovskites, giving rise to substantial changes in optical properties and electronic bandgap
J. Am. Chem. Soc.@J_A_C_S

Light-Driven Intraoctahedral Halide Isomerization in Two-Dimensional Mixed Halide Perovskites | Journal of the American Chemical Society pubs.acs.org/doi/10.1021/ja…

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J. Am. Chem. Soc.
J. Am. Chem. Soc.@J_A_C_S·
Light-Driven Intraoctahedral Halide Isomerization in Two-Dimensional Mixed Halide Perovskites | Journal of the American Chemical Society pubs.acs.org/doi/10.1021/ja…
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Cavendish Laboratory
Cavendish Laboratory@DeptofPhysics·
✨ The next Cambridge Physics Centre Lecture, Building the Smallest Box to Trap Light, is on 22 Jan, 6pm. Dr Rakesh Arul will explore how we can use techniques from nanotechnology, chemistry, and physics to make light work for us. 👉 buff.ly/Jh313zw
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Mercouri Kanatzidis
Mercouri Kanatzidis@MercouriK·
Excited to announce our latest work in @AdvMat: 'Spectroscopic Performance of CsPbBr3 Perovskite γ-Ray Detectors Despite Grain Boundaries.' CsPbBr3 shows remarkable defect tolerance, maintaining spectroscopic resolution even with grain boundaries. While grain boundaries are typically viewed as detrimental in crystals for gamma-ray and X-ray photon counting detectors, our results indicate that CsPbBr3 can tolerate them without compromising spectroscopic performance, potentially enabling more scalable fabrication processes. Congrats to co-first authors Safdar Imam & Quoc Vuong Phan! doi.org/10.1002/adma.2… #Perovskites #GammaRayDetection #MaterialsScience"
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Sam Stranks
Sam Stranks@SamStranks·
Interested in a PhD in energy materials at @Cambridge_Uni? Applications for 2026 cohort of the PhD in Sustainable Energy Materials Innovations (SEM PhD) course now open - deadline 7th Jan 2026. Projects offered in a wide range of topics semphd.energy.cam.ac.uk
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Milos Dubajic
Milos Dubajic@milosdubajic·
1/5 How to check the epitaxial relationship of an orthorhombic film on a monoclinic substrate? In our Science paper led by @paul_yanglu , I helped with SC-XRD to solve this complex puzzle! See the atomistic model of PEA₂PbBr₄/CsPbBr₃ heterostructure we extracted below!
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StranksLab
StranksLab@StranksLab·
🚨 @ScienceMagazine paper by @paul_yanglu 🚨 Heteroepitaxial coevaporation of CsPbBr3 on 2D PEA2PbBr4 single crystals w/ atomic thickness control, confinement, & control of electronic structure by interfacial eng —> novel optoelectronic device platform science.org/doi/10.1126/sc…
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