Excited to see our work on multi-stimuli transformations of Pd(II) assemblies featured on the cover of @angew_chem! Really happy that my artwork was chosen for the cover again. https://t.co/IoODjrCsKr
@pranaymaitra09 Depends on the case, in some cases (homoletic cages) there is quite strong binding capable to act as the cage-to-cage transformation stimulus, in the other there is only weak exo-binding.
Our work on a multi-stimuli transformational network of Pd(II) #cages has just been published in @angew_chem! Many thanks to @guido_clever, Zhiwei Zeng, and @PriscilaGiaB! https://t.co/IoODjrCsKr
@pranaymaitra09 Thanks. At this stage, this is more a proof of concept but the studied post-assembly modification could be utilized for signaling cascades by introducing functional moieties into assembly while simultaneously releasing a guest and a secondary ligand/assembly.
Excited to share that our work has just been published in @angew_chem Int. Ed.! 🎉
This work was carried out during my research stay in @guido_clever's group. Many thanks to everyone who contributed, especially @guido_clever, @mikherdov, and Zhiwei Zeng.
https://t.co/zHT03xpJCb
Check out our recent work "Stepwise introduction of dipole blades into triptycenes: opening the variety of crystalline molecular packing modes" which is now online in @CrystEngComm. Congratulations, Hikaru and all collaborators!!
https://t.co/sCn7A8SIer
We found that changing the number of dipoles in triptycene tunes the intermolecular packing from two-dimensional intermeshed structures to helical structures, offering a novel insight for engineering triptycene-based supramolecular materials.
In our recent paper, we report for the first time, the use of carbon-carbon-bond-based radicals for the synthesis of (porous) organic cages with unique reactivity. Congratulations to Yannic for making it work 🧪🔥
https://t.co/82l1edMrbg
Coupling Molecular Rotation and Symmetry to Control Solid-State Chiroptical Properties in Crystalline Chiral N-Heterocyclic Carbene Au(I) Complexes
https://t.co/bezdN0a9J8
Check out our recent work in @AggregateOA on the interplay of molecular motion and symmetry in crystalline gold(I) complexes to control their chiroptical properties. Congrats to @PingyuJiang, @MingooJin, @haj19932469, and thanks to @ICReDDconnect!
https://t.co/KCtc5F0U8w
The group has a new preprint out on ChemRxiv, continuing our work into understanding intermediate-sized palladium cages: A framework for accessing elusive intermediate-sized PdnL2n (n = 8, 9) metal-organic cages.
https://t.co/yymWK1mBlI
Excited to see my artwork for our recent work on dual cation/anion binding Pd(II) coordination cages featured on the cover of @J_A_C_S!
Check out the paper here: https://t.co/fbdsIBG7l2
@guido_clever@KwanShing1125
Incredibly excited to share the final piece of work from my PhD. In this very enjoyable collaboration between the @ribas_xavi and @FeringaLab we were able to rotate a motor guest inside a molecular cage. Check it out in the link 👇 @J_A_C_S@univgroningen
https://t.co/F3fsRYa387