#helicates
June 12, 2025 at 11:46 AM
For #FluorescenceFriday we share @heechankim.bsky.social’s new work in JACS on cationic boron helicates and helicenes! 🔥🔥🔥 #luminescence #boron #chiral #maingroup pubs.acs.org/doi/10.1021/... @jacs.acspublications.org
June 20, 2025 at 12:44 PM
Something big is coming…
Soon, we’ll be able to share a story of peptide helicates, helical polymers, and DNA junctions.
Stay tuned 😉
#ChemSky #DNAJunctions #SupraChemSky #ChemBioSky
May 28, 2025 at 6:07 AM
We bind supramolecular helicates to DNA junctions as lock-and-key and now induced-fit too! Exploring how a helicate's size, shape and symmetry affect structures of #DNAjunctions @jacs.acspublications.org

pubs.acs.org/doi/10.1021/...

Congratulations Sam, Hugo and Sumit @uobchemistry.bsky.social
October 27, 2025 at 5:19 PM
After adding Co(II) ions → magic happens ✨
👉 In water, P-agg slowly disassembles and BTMA-1 folds into ΛΛ helicates
👉 In DMSO, molecularly dissolved BTMA-1 folds into ΔΔ helicates
👉 This chiral change is fully reversible and driven by arginine side chains

#DNAjunction #SupramolecularChem #ChemSky
June 14, 2025 at 6:01 AM
Fascinating work about enzymes activating helicates and turning on function @uobchemistry.bsky.social @uob-bear.bsky.social #bioinorganic #supramolecular
An enzyme overexpressed in cancer cells, transforms an inert large supramolecular complex into a DNA Junction Binder! With NAND logic control, and a fascinating role for entropy in controlling binding, read it at doi.org/10.1002/anie.202503683 @uobchemistry.bsky.social
March 25, 2025 at 8:38 PM
Hello bsky! My lab at CiQUS develops metallopeptide tools for nucleic acid junctions and G-quadruplexes. We are particularly interested in peptide helicates and DNA-3WJ. Please follow us for more news about our research #DNA #RNA #metallopeptides #chemicalbiology #supramolecularchemistry
November 15, 2024 at 2:42 PM
Now out a nice overview of the work from our colleagues at @labmoldesign-ub.bsky.social on host-guest chemistry of helicates: spin-crossover, spin dynamics, quantum coherence etc. With a little help from us @hymat-inma.bsky.social @inmadivulga.bsky.social

pubs.acs.org/doi/full/10....
Multifunctional Guest-Hosting Triple-Stranded Helicates: From Anion Recognition to Quantum Information Applications
ConspectusThe growing field of coordination supramolecular chemistry constitutes a fruitful avenue for accessing a variety of multifunctional materials with a range of applications. Their versatility ...
pubs.acs.org
March 28, 2026 at 7:23 PM
🎨 Our JACS Supplementary Cover is out!

A supramolecular story of fibers, peptide helicates, and DNA three-way junctions…

👉 pubs.acs.org/toc/jacsat/1...

#DNAjunction #MyACSCover #ChemSky #SupramolecularChem

@acs.org @pubs.acs.org @jacs.acspublications.org
July 23, 2025 at 9:40 AM
Just out in Crystal Growth & Design @pubs.acs.org !
🧲 Two Dy³⁺ helicates with identical frameworks but different ligand protonation states: tuning anisotropy axes & dipolar coupling.
Nice collab with @linpoheng-nchu.bsky.social

@icgmmontpellier.bsky.social @umontpellier.bsky.social
Tuning Anisotropy Axis Orientation and Dipolar Coupling in Triple-Stranded Dinuclear Dy3+ Helicates Via Ligand Protonation State
We report the synthesis, crystal structures, and magnetic properties of two novel triple-stranded Dy3+ helicates, [Dy2(H3TB)3]Br3 (1) and [Dy2(H2TB)2(H3TB)](NO3) (2), which share an identical framewor...
pubs.acs.org
July 18, 2025 at 9:51 AM
Our recent accounts on Triple-stranded supramolecular helicates enable host–guest synergy, tunable spin-crossover, single-ion magnetism, anion recognition, and quantum coherence advances. Cheers to All 😇😊 @labmoldesign-ub.bsky.social @hymat-inma.bsky.social
pubs.acs.org/doi/10.1021/...
Multifunctional Guest-Hosting Triple-Stranded Helicates: From Anion Recognition to Quantum Information Applications
ConspectusThe growing field of coordination supramolecular chemistry constitutes a fruitful avenue for accessing a variety of multifunctional materials with a range of applications. Their versatility is enhanced if they have the ability to encapsulate guest molecules, opening opportunities for host/guest synergies. One of the most paradigmatic categories of such assemblies is coordination supramolecular helicates, which exhibit a central cavity for the potential allocation of small species, provided that their symmetry and volumes are compatible. The presence of noncovalent interactions (NCIs) between host and guest strongly contributes to the thermodynamic stability of these edifices, sometimes giving rise to a template effect. All those features are exploited for the case of triple-stranded helicates, which are predictably obtained from reactions of metal ions that adopt an octahedral coordination geometry with ligands made of two chelating moieties sufficiently separated by a spacer. The properties of the cavity of the helicate can be tuned by adjusting the central spacer of the ligand, which in turn, may incorporate functionalities facilitating NCIs with potential guests, such as hydrogen bonds. In this manner, a collection of pyrazolylpyridine (or -quinoline) ligands (L) has given rise to a large family of (G@[M2L3])n+ species (where G represents various guests), in which the encapsulated entities are firmly held in place by [N–H···G] hydrogen bonds. These assemblies can thus be employed for the selective recognition of anions or small coordination complexes, capitalizing on the specific architecture of the ligand strands. Furthermore, they have opened a plethora of possibilities for the investigation of synergic multifunctionality. The host can be made to exhibit molecular switching behavior (for example, spin-crossover, SCO, if M = FeII) or single-ion magnet (SIM) behavior (if M = CoII) while the guest has been exploited to tune these properties or to incorporate new ones. More recently, anionic coordination complexes such as these from the series [M(ox)3]3– (“ox” being the oxalate anion and M = Fe, Cr, Al, Ru) have been efficiently trapped inside the metallo-helices. This has unveiled unprecedented phenomena resulting from encapsulation, such as the first manifestation of SIM behavior for CrIII or the enhancement of the quantum coherence of a molecular qubit when acting as the guest. This family has been expanded with the inclusion of the anilate analogues of oxalates, opening unlimited options for multiproperty explorations (such as photophysical, redox chemistry, radical generation, etc.). More recently, within this group of systems, the guest has been employed as a template to selectively assemble specific combinations of two different ligands in the form of G@[M2LxL′(3–x)]m+ heteroleptic helicates, thus leading to a further opportunity of function tunability and enhancement. In this Account, we survey this and other related types of host/guest assemblies and place them in the general context of triple-stranded supramolecular helicates while assessing their impact in fields like molecular magnetism, quantum technologies, or anion recognition.
pubs.acs.org
February 27, 2026 at 8:52 AM
Ihad an amazing two days @RSC_MASC 24 in York, presenting our recently published work on Ln tzpa helicates doi.org/10.1039/D4QM00…. There was great talks on chiralty, along with MIMs. As always, thankyou to @CDT_ACM and Thorri for their suppor#MASC242#helicatese#LnLn
December 18, 2024 at 4:47 PM
Can’t wait to travel to Pavia next month to see my friends.
Honored to speak at the Università di Pavia about our latest work on peptide helicates and DNA three-way junctions.

#DNAJunctions #ChemSky #ChemBioSky
May 23, 2025 at 1:30 PM
The key to our approach is BTMA-1…
👉 A C₃-symmetric peptide equipped with six 2,2’-bipyridine arms.
👉 Designed to form chiral supramolecular helical polymers in water.
👉 And to generate discrete peptide helicates upon metal ion coordination.

#DNAjunction #SupramolecularChem #ChemSky
June 12, 2025 at 8:00 AM
Yay! Helicates to the rescue!
June 12, 2025 at 8:30 AM
🔥 New research from CiQUS makes the cover of Journal of the American Chemical Society (JACS): chiral helical polymers meet helicates and chart their path to DNA three-way junctions (3WJ).

🧪 Full story: www.usc.es/ciqus/en/new...

#FondosEuropeos #RedeCIGUS
A molecular system with potential to target DNA structures associated with cancer
During DNA replication, the classic double helix can temporarily rearrange into an alternative structure known as a DNA three-way junction (3WJ). These configurations form a well-defined central
www.usc.es
July 23, 2025 at 10:56 AM
So happy for sharing a second article this week, this time published in @chemcomm.rsc.org: Topology modulation in Ni(II) helicates through SiF₆²⁻-directed self-assembly. Congrats to all, specially @swain30abinash.bsky.social, you rock it! pubs.rsc.org/cc/article-a...
July 31, 2026 at 11:54 AM
Modulation of Eu(III)-Centered Luminescence by Fe(II) Spin-Crossover in Extended Trinuclear Helicates | Inorganic Chemistry pubs.acs.org/doi/10.1021/... Piguet and co-workers @InorgChem #europium #iron #SCO #helicates #zinc #energy_transfer
June 27, 2025 at 8:40 AM
🔍 Both Co(II) and Co(III) peptide helicates selectively recognize three-way DNA junctions (3WJs) — a key non-canonical DNA structure 🧬
🧪 Competition assays confirm their strong preference for 3WJs over canonical B-DNA

#DNAjunction #SupramolecularChem #ChemSky
June 16, 2025 at 6:42 AM
(2/4) Homometallic helicates form with Fe(II), Zn(II), and Co(II).
We demonstrate highly selective #heterobimetallic #self-sorting of Zn(II) and Fe(II), as well as Zn(II) and Co(II), within the helicates, despite both metal centres being octahedrally coordinated.
June 12, 2025 at 11:46 AM
🧩 Our system can selectively recognize 3WJs in two ways:
1️⃣ From preformed Co(II) helicates
2️⃣ Or directly from the P-agg supramolecular polymer — just by adding Co(II) ions!

💤 The polymer acts as a latent reservoir, releasing bioactive helicates on demand.

#DNAjunction #SupramolecularChem #ChemSky
June 17, 2025 at 10:15 AM
Robust and High Temperature Spin Crossover Controlled via the Self-Assembly of Chiral and Racemic Polymorphs in Triazolylimine [Fe(2)L(3)](BF(4))(4) Helicates
Robust and High Temperature Spin Crossover Controlled via the Self-Assembly of Chiral and Racemic Polymorphs in Triazolylimine [Fe2L3](BF4)4 Helicates - PubMed
Three new chiral spin crossover (SCO) dinuclear triple helicates of type [Fe<sub>2</sub><b>L</b><sub>3</sub>](BF<sub>4</sub>)<sub>4</sub> are reported exhibiting a robust magnetic behavior that is resistant...
ift.tt
April 12, 2025 at 4:12 PM
Issue 32 is here! #ChemSciCovers

Our front cover this week features Ming Liu et al 🤩

'Construction of helicates based on six-coordinated silicon centres'

🔗 doi.org/10.1039/D5SC...
August 15, 2025 at 1:01 PM
Modulation of Eu(III)-Centered Luminescence by Fe(II) Spin-Crossover in Extended Trinuclear Helicates
Modulation of Eu(III)-Centered Luminescence by Fe(II) Spin-Crossover in Extended Trinuclear Helicates - PubMed
The efficiency of intermetallic d-f energy transfers in molecular-based Fe(II)-Ln(III) dyads can be modulated by (i) the spin state of the [Fe(II)N<sub>6</sub>] unit, (ii) the intermetallic distance,...
ift.tt
June 29, 2025 at 4:12 PM
Robust and High Temperature Spin Crossover Controlled via the Self-Assembly of Chiral and Racemic Polymorphs in Triazolylimine [Fe2L3](BF4)4 Helicates | Inorganic Chemistry pubs.acs.org/doi/10.1021/... Li and co-workers @InorgChem #iron #SCO #chrial #racemic #polymorphs #triazolylimine
April 19, 2025 at 7:08 AM