Proton transfer in hydrogen-bonded pyridine/acid systems: the role of higher aggregation
文献信息
Vytautas Balevicius, Ruta Bariseviciute, Kestutis Aidas, Ingrid Svoboda, Helmut Ehrenberg, Hartmut Fuess
In this work the role of higher molecular aggregation in the proton transfer processes within hydrogen bond (H-bond) is investigated. The H-bonded complex consisting of 4-cyanopyridine (CyPy) with trichloroacetic acid (TCA) has been studied in the solutions of acetonitrile, carbon tetrachloride, chloroform and dichloroethane as solvent by FTIR spectroscopy and quantum chemical DFT calculations. In order to illustrate the effect of increasing H-bond strength FTIR investigations have also been performed on solutions of CyPy with H2O, acetic-, trifluoroacetic- and methanesulfonic acids. Proton states in the H-bond have been monitored using vibrational CyPy ring modes in FTIR spectra. The stabilization of the CyPy/TCA complex in its protonated form upon increasing polarity of the solvent has been evidenced. It was shown that formation of the CyPy/(TCA)2 aggregates in the solutions favors the proton transfer process. An X-ray diffraction study has been performed on a single 1 : 2 co-crystal of pyridine/3,5-dinitrobenzoic acid. The H-bond motif found in this system exhibits the same connectivity by strong hydrogen bonds N–H+⋯O− and O–H⋯O as that in the CyPy/(TCA)2 complex predicted by DFT calculation. Certain discrepancies are observed in C–H⋯O connectivity only. The networks of H-bonds in both assemblies differ from those usually pictured for 1 : 2 base/carboxylic acid complexes in the literature.
期刊推荐

Current Opinion in Solid State & Materials Science

New Journal of Chemistry

Journal of Peptide Science

Russian Journal of Bioorganic Chemistry

Russian Journal of Applied Chemistry

Russian Chemical Bulletin

Current Opinion in Colloid & Interface Science

Organic Process Research & Development

Crystallography Reports

Drug Discovery Today
相关文献
Sustainable synthesis of CO2-derived polycarbonates from d-xylose
David K. Tran, Ahmed Z. Rashad, Donald J. Darensbourg
DOI: 10.1039/D1PY00784J
Divergence of polycondensation by a tandem reaction based on sequential conjugate substitutions
Keito Hagiwara
DOI: 10.1039/D0PY00648C
General approach to prepare polymers bearing pendant isocyanate groups
Rodrigo Navarro, Carolina García, Juan Rodríguez-Hernández, Carlos Elvira, Angel Marcos-Fernández, Alberto Gallardo, Helmut Reinecke
DOI: 10.1039/D0PY00989J
Unprecedentedly high active organocatalysts for the copolymerization of carbonyl sulfide and propylene oxide: steric hindrance effect of tertiary amines
Jiraya Kiriratnikom, Xin-Chen Yue, Jia-Liang Yang, Ying Wang, Shuo-Hong Chen, Ke-Ke Zhang, Cheng-Jian Zhang, Munir Ullah Khan
DOI: 10.1039/D1PY01013A
High chemical recyclability of vinyl lactone acrylic bioplastics
Reid A. Gilsdorf, Matthew A. Nicki, Eugene Y.-X. Chen
DOI: 10.1039/D0PY00786B
Post-polymerization modification of polybenzoxazines with boronic acids supported by B–N interactions
Yuki Tsukamoto, Jumpei Kida, Daisuke Aoki, Hideyuki Otsuka
DOI: 10.1039/D1PY00657F
Tellurophene-containing π-conjugated polymers with unique heteroatom–heteroatom interactions by post-element-transformation of an organotitanium polymer
Hiroki Nishiyama, Feng Zheng, Shinsuke Inagi, Hiroyuki Fueno, Ikuyoshi Tomita
DOI: 10.1039/D0PY00724B
Tailoring polymer dispersity by mixing ATRP initiators
Kostas Parkatzidis, Manon Rolland, Nghia P. Truong, Athina Anastasaki
DOI: 10.1039/D1PY01044A
Effects of various Cu(0), Fe(0), and proanthocyanidin reducing agents on Fe(iii)-catalysed ATRP for the synthesis of PMMA block copolymers and their self-assembly behaviours
Yi-Shen Huang, Han-Yu Hsueh, Junko Aimi, Li-Chieh Chou, Yu-Chi Lu, Chung-Chi Wang, Kuo-Yu Chen, Chih-Feng Huang
DOI: 10.1039/D0PY00658K
Reversible cyclic-linear topological transformation using a long-range rotaxane switch
Daisuke Aoki, Gota Aibara
DOI: 10.1039/D1PY01197A
您可能还喜欢
(5-氨基吡唑-3-基)乙酸(CAS号:174891-10-2)的物理化学性质是什么?
(5-氨基吡唑-3-基)乙酸是一种无色至白色固体,分子量为174.15 g/mol。它在水中具有较好的溶解性,在有机溶剂中的溶解度较低。该化合物具有较好的反应活...
3-氟-4,5-二氯苯胺(CAS号:35754-38-2)适用哪些法规指南?
3-氟-4,5-二氯苯胺受到多项法规指南的约束,包括但不限于GHS(全球化学品统一分类和标签制度)的危险分类标准、欧盟的REACH法规(注册、评估、授权和限制)...
什么是(R)-(+)-2,2',6,6'-四甲氧基-4,4'-联(二(3,5-二甲苯基基)膦基)-3,3'-二联吡啶(CAS号:442905-33-1)?
这是一种有机化合物,化学名为(R)-(+)-2,2',6,6'-四甲氧基-4,4'-联(二(3,5-二甲苯基基)膦基)-3,3'-二联吡啶,CAS号为44290...
1-氨基-2-氰基萘(CAS号:3100-67-2)应用于哪些行业?
1-氨基-2-氰基萘在医药、聚合物、传感器和半导体等行业中有应用。在医药领域,它可用作中间体合成某些药物。在聚合物行业,它可以用于制备具有特定性能的聚合物。此外...
如何处理含有1-溴-4-(异丙氧基甲基)苯(CAS号:98446-84-5)的废料?
处理含1-溴-4-(异丙氧基甲基)苯的废料时,首先应确保废液收集在防渗漏的容器中,避免泄露。然后,可以考虑采用化学降解法或物理吸附法进行处理。在特定条件下,可通...
6-Chloro-8-(trifluoromethyl)chroman-4-one(CAS号:1344889-75-3)的主要用途是什么?
6-氯-8-三氟甲基-2,3-二氢-4H-色喃-4-酮主要用于有机合成中的中间体,也可作为研究试剂使用。
7-乙氧基-2-萘酚(CAS号:57944-44-2)通常如何合成?
7-乙氧基-2-萘酚通常通过N-乙氧基化反应合成,首先将2-萘酚与乙醇钠在乙醇中反应生成7-乙氧基-2-萘酚钠盐,再通过酸化进一步得到7-乙氧基-2-萘酚。该合...
4-(1,1-二氧硫代吗啉)丁醇(CAS号:59801-41-1)适用哪些法规指南?
该化合物需遵循一系列的法规指南,包括但不限于GHS全球统一分类和标签制度,其分类可能包括易燃液体和可能危害水生环境。在欧洲,还需遵循REACH法规,确保物质和混...
4-甲氧基苄基叠氮甲酸酯(CAS号:25474-85-5)的物理化学性质是什么?
4-甲氧基苄基叠氮甲酸酯是一种无色液体,具有一定的挥发性。其分子量为198.16,熔点为-69°C,沸点为105°C。该化合物在水中溶解度较低,在有机溶剂如乙醇...
如何处理含有4-氯-2-氟嘧啶(CAS号:51422-00-5)的废料?
含有4-氯-2-氟嘧啶的废料应按照危险废物处理。首先,应收集并分类这些废料,避免与其他废物混合。然后,可以采用焚烧处理或者交由专业机构进行处置。在处理过程中,需...
来源期刊
Physical Chemistry Chemical Physics

Physical Chemistry Chemical Physics (PCCP) is an international journal co-owned by 19 physical chemistry and physics societies from around the world. This journal publishes original, cutting-edge research in physical chemistry, chemical physics and biophysical chemistry. To be suitable for publication in PCCP, articles must include significant innovation and/or insight into physical chemistry; this is the most important criterion that reviewers and Editors will judge against when evaluating submissions. The journal has a broad scope and welcomes contributions spanning experiment, theory, computation and data science. Topical coverage includes spectroscopy, dynamics, kinetics, statistical mechanics, thermodynamics, electrochemistry, catalysis, surface science, quantum mechanics, quantum computing and machine learning. Interdisciplinary research areas such as polymers and soft matter, materials, nanoscience, energy, surfaces/interfaces, and biophysical chemistry are welcomed if they demonstrate significant innovation and/or insight into physical chemistry. Joined experimental/theoretical studies are particularly appreciated when complementary and based on up-to-date approaches.



![1-oxaspiro[4.4]nonan-6-one structure 1-oxaspiro[4.4]nonan-6-one structure](https://cnstatic.chemtradehub.com/structs/134/134179-01-4-e051.webp)
![1-(1-Benzyl-1,2,3,6-tetrahydropyridin-4-yl)-1H-benzo[d]imidazol-2(3H)-one structure 1-(1-Benzyl-1,2,3,6-tetrahydropyridin-4-yl)-1H-benzo[d]imidazol-2(3H)-one structure](https://cnstatic.chemtradehub.com/structs/603/60373-71-9-7dfb.webp)