 
                                NikolayTkachenko
@tkachenkokolya
Graduated from Novosibirsk State University. Currently a Postdoctoral Scholar at UC Berkeley.
ID: 1465380132143570946
29-11-2021 18:00:34
19 Tweet
28 Followers
62 Following
 
         
        Recent publication from our group: "Occurrence of Double Bond in π-Aromatic Rings: An Easy Way to Design Doubly Aromatic Carbon-Metal Structures" mdpi.com/1381808 #mdpimolecules via Molecules MDPI
 
         
         
         
        J Chem. Inf. Model. Performance Analysis of #CP2K Code for #AbInitio #MolecularDynamics on #CPUs and #GPUs JCIM & JCTC Journals CP2K Los Alamos National Laboratory #AIMD #compchem #chemtwitter #chemistry #sciencenews #innovation pubs.acs.org/doi/10.1021/ac…
 
                        
                    
                    
                    
                 
        Another very important article published in Nature Communications. In this work, we demonstrated the synthesis and theoretical characterization of a new germanium cluster (Ge24)4–. nature.com/articles/s4146… Nature Communications
 
         
         
         
         
        (1/2) Introducing D3S (by NikolayTkachenko): our reparametrized dispersion correction model that fixes unphysical minima in D3, offering smoother PES without sacrificing accuracy. Check out the details here: pubs.acs.org/doi/10.1021/ac…
 
                        
                    
                    
                    
                 
        (2/2) The D4 model, though improved over D3, still exhibits artificial kinks in potential energy surfaces due to abrupt changes in C6 coefficients. We (NikolayTkachenko, Linus, and Rebecca) have also developed D4S and D4SL methods to eliminate these issues! pubs.acs.org/doi/10.1021/ac…
 
                        
                    
                    
                    
                 
         
         
         
        ![The Journal of Physical Chemistry (@jphyschem) on Twitter photo Tkachenko et al. studied a solvation process of nitrate anion showing its preferential interfacial solvation. The DFT-driven-PSO algorithm has been introduced to sample the potential energy surface of various microsolvated [NO3·(H2O)n]– (n=1-12) clusters.
fal.cn/3j2kK Tkachenko et al. studied a solvation process of nitrate anion showing its preferential interfacial solvation. The DFT-driven-PSO algorithm has been introduced to sample the potential energy surface of various microsolvated [NO3·(H2O)n]– (n=1-12) clusters.
fal.cn/3j2kK](https://pbs.twimg.com/media/FBqc6iGUUAE8S_q.png)