
Qiang Sun (SHU surface Group)
42 posts

Qiang Sun (SHU surface Group)
@SHUSurfaceLab
Group leader at Materials Genome Institute of Shanghai University, working on surface science phenomenon&nanomaterials; high-throughput method; AI applications
Shanghai Tham gia Kasım 2021
96 Đang theo dõi144 Người theo dõi
Qiang Sun (SHU surface Group) đã retweet

Thrilled to share our new paper in @angew_chem!
We used on-surface chemistry to grow Fe- and Co-porphyrin nanotapes and explore their unique magnetic interactions! A great collaboration between @Empa_CH, @CFMdonostia, and @UAM_Madrid onlinelibrary.wiley.com/doi/10.1002/an…
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We have demonstrated a way to grow multi-component molecular nanostructures on a surface, inspired from Venn diagram, high-throughput chemistry🧪.
pubs.acs.org/doi/full/10.10…
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Automating materials synthesis is hot🔥, here is our latest work on automating nanomaterials synthesis under ultrahigh vacuum chamber.
pubs.acs.org/doi/full/10.10…
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@lmaperdigao Hi, Luis. It depends. The algorithm will suggest to apply either tip crashing or voltage pulse based on what it has "seen".
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@SHUSurfaceLab Very interesting, but is tip crashing as the figure suggests, the best way to improve a STM tip?
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Our latest work on integrating deep learning models to develop autonomous STM system conducting self-driving measurement and data analysis. Thrilled to explore more applications.
"Autonomous Scanning Tunneling Microscopy Imaging via Deep Learning" pubs.acs.org/doi/10.1021/ja…
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Two relevant work that also take advantage of chalcogen atoms:
nature.com/articles/s4146…
pubs.acs.org/doi/10.1021/ja…
Qiang Sun (SHU surface Group)@SHUSurfaceLab
We have explored how to use chalcogen atom, Te, to direct molecular self-assembly on surface @acsnano Constructing Molecular Networks on Metal Surfaces through Tellurium-Based Chalcogen-Organic Interaction | ACS Nano pubs.acs.org/doi/10.1021/ac…
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We have explored how to use chalcogen atom, Te, to direct molecular self-assembly on surface @acsnano
Constructing Molecular Networks on Metal Surfaces through Tellurium-Based Chalcogen-Organic Interaction | ACS Nano pubs.acs.org/doi/10.1021/ac…
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By applying a physical mask in the vacuum chamber, we explored the growth of metals with gradient coverage on a millimeter scale substrate. #High-Throughput Method. @ChinChemLett
👉Preparing sub-monolayer metals with continuous coverage spread for hig... sciencedirect.com/science/articl…
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Qiang Sun (SHU surface Group) đã retweet

How to reliably demonstrate Kondo behavior by temperature-dependent scanning tunneling spectroscopy journals.aps.org/prresearch/abs…
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Impressive video showing so many details uncovering what happen about molecules landing on surfaces
Kelvin Anggara@vixklen
Excited to share our recent @mpifkf works at #DPGSpringMeeting #DPG2024 #SKM24 @TUBerlin! Looking forward to feedback from the #physics and #stm communities. Also we are going to @MpiciPotsdam @BioMolSy on Tue to say hi to friends 😊 Really hoping that @DB_Bahn works 100% 🙏
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Qiang Sun (SHU surface Group) đã retweet

If your reserch relates to on-surface synthesis, don´t miss your chance to submit your abstract to #OSS24
(oss24.dipc.org) before the extended deadline: Marth 14th. Hope to see you in San Feliu de Guixols!
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Qiang Sun (SHU surface Group) đã retweet

Just out in @NatureNano 🥳 - we show how to do photochemistry with submolecular precision☀️🔬⚗️
Great teamwork with @IPCMSlab @CNRS @FZU_AVCR @mpifkf !🍻
nature.com/articles/s4156…
More below 👇(1/n)
GIF
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Qiang Sun (SHU surface Group) đã retweet

Cyclocarbons are deceptively simple looking. But it's only in the last few years that chemists have pushed the limits of synthesis far enough to gain insights into these forms of pure carbon – some of which could change how we define aromaticity.
chemistryworld.com/news/how-a-new…
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@00alexx Thanks for sharing! Very useful codes, the illustration gets much improved.
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🔬 Excited to share our new work on photoinduced on-surface synthesis. We try to offer novel perspectives in the study of light-induced chemical processes on surfaces.
@acsnano pubs.acs.org/doi/10.1021/ac…
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Our latest work on #SurfaceSelfAssembly is out in ACS Nano, in which we seek to incorporate randomness into 2D molecular networks.
Order–Disorder Transition of Two-Dimensional Molecular Networks through a Stoichiometric Design | ACS Nano pubs.acs.org/doi/10.1021/ac…
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