Cina Foroutan-Nejad
cforoutannejad.bsky.social
Cina Foroutan-Nejad
@cforoutannejad.bsky.social
Chemist, Associate Professor at Polish Academy of Sciences. Interested in playing with molecules. Dreaming about molecular memristors.
Pinned
🚀 Remember the idea of the ionic C-C bond? It's now evolved into something even simpler and more elegant: the carbon-carbon ylide concept!

🔗 Read more: chemrxiv.org/engage/chemr...

#Chemistry #ChemicalBonding #Ylide
Excited to share that we’ll have 2 postdoc positions opening soon!
Applicants should prepare and submit their own research proposals. Each position is for 3 years, including a 3 to 6-month international internship.
#postdoc
November 19, 2025 at 8:58 PM
Reposted by Cina Foroutan-Nejad
🧵8/8
Don't miss work from @cforoutannejad.bsky.social‬, Kyle M. Lancaster, Abolghasem ‘Gus’ Bakhoda & co on alkaline earth metal-assisted dinitrogen activation at nickel

pubs.rsc.org/en/content/a...

📍Towson University and Polish Academy of Sciences
🧪
Alkaline earth metal-assisted dinitrogen activation at nickel
Rare examples of trinuclear [Ni–N2–M–N2–Ni] core (M = Ca, Mg) with linear bridged dinitrogen ligands are reported in this work. The reduction of [iPr2NN]Ni(μ-Br)2Li(thf)2 (1) (iPr2NN =…
pubs.rsc.org
May 30, 2025 at 10:30 AM
🚀 Remember the idea of the ionic C-C bond? It's now evolved into something even simpler and more elegant: the carbon-carbon ylide concept!

🔗 Read more: chemrxiv.org/engage/chemr...

#Chemistry #ChemicalBonding #Ylide
April 2, 2025 at 2:16 PM
The fruit of our first collaboration with Przemyslaw Gaweł in 2025 is a stable OFET. From design to device fabrication in a single paper published in @acsjacs.bsky.social. #Aromaticity is utilized for tuning the band gap in a new PAC, Indoloindolizine.
pubs.acs.org/doi/10.1021/...
Indoloindolizines: The Complete Story of a Polycyclic Aromatic Scaffold from Theoretical Design to Organic Field-Effect Transistor Applications
The development of stable and tunable polycyclic aromatic compounds (PACs) is crucial for the advancement of organic optoelectronics. Conventional PACs, such as acenes, often suffer from poor stability due to photooxidation and oligomerization, which are linked to their frontier molecular orbital energy levels. To address these limitations, we designed and synthesized a new class of π-expanded indoloindolizines by merging indole and indolizine moieties into a single polycyclic framework. We developed a scalable synthetic protocol to produce a wide range of π-expanded derivatives. The structural, electronic, and optical properties of these compounds were extensively characterized. We achieved precise modulation of the electronic structure by controlling the aromaticity of specific rings. Benzannulation at targeted positions allowed fine-tuning of the HOMO–LUMO gap, leading to distinct shifts in the optoelectronic properties. Single-crystal X-ray diffraction confirmed their molecular structures, while theoretical calculations provided insights into the observed experimental trends. These indoloindolizines exhibit vivid colors and fluorescence across the visible spectrum and enhanced stability against photooxidation. Reactivity studies demonstrated high regioselectivity in electrophilic substitutions, highlighting the indole-like behavior of these compounds and opening avenues for further functionalization. To showcase the practical utility of our design rules, we fabricated organic field-effect transistors (OFETs) using the newly developed indoloindolizines, which revealed remarkable performance with ambipolar charge transport properties. Overall, our work establishes indoloindolizines as a promising platform for the development of stable, tunable organic materials for optoelectronic applications. Through rational molecular design, we have provided a new pathway for molecular innovation in organic electronics.
pubs.acs.org
January 14, 2025 at 4:22 PM
The first publication of 2025 at the @angewandtechemie.bsky.social.
A transition-metal-free synthesis of π-extended bipolar polyaromatic hydrocarbons and all via an unexpected ionic mechanism! In collaboration with the Group of Marcin Lindner at IOCPAS.
onlinelibrary.wiley.com/doi/10.1002/...
One‐Pot Transition‐Metal‐Free Synthesis of π‐Extended Bipolar Polyaromatic Hydrocarbons
The development of straightforward synthetic methods for photoactive polycyclic aromatic hydrocarbons (PAHs) that avoid Pd-catalyzed or radical-based processes remains a challenge. Such methods are e...
onlinelibrary.wiley.com
January 13, 2025 at 3:41 PM
After a bit of playing around, I made this via scholargoggler.com
A wordcloud of what I've done so far. I hope in 2025 totally new words appear in this cloud! And, hopefully, no more aromaticity 😂
November 25, 2024 at 7:02 PM
What will happen if we twist an anti-Bredt olefin too much? Well, you might get a stable "Carbon-Carbon Double Bonds with a Covalent σ and an Ionic p-Bond!"
chemrxiv.org/engage/chemr...
Carbon-Carbon Double Bonds with a Covalent σ and an Ionic p-Bond in Anti-Bredt Olefins
In the universe of chemical bonds, a spectrum stretches from the almost purely ionic to the perfectly covalent. Yet, amid this intricate zoo of possibilities, one elusive creature remains unseen: a mi...
chemrxiv.org
November 22, 2024 at 8:21 AM
Hello world!
November 19, 2024 at 6:24 AM