Engineering silver(i) coordination networks through hydrogen bonding
Literature Information
Tara J. Burchell, Dana J. Eisler, Richard J. Puddephatt
The silver(I) coordination networks [Ag2(μ-O2CCF3)2(μ-NN)2]∞ exist as a polymer of macrocycles or a double-stranded polymer when NN = 1,2-C6H4{NHC(O)-4-C5H4N}2 or 1,2-C6H4{NHC(O)-3-C5H4N}2, respectively. Crystal engineering of the polymers is achieved through interchain hydrogen bonds.
Related Literature
Gaussian analysis of Raman spectroscopy of acetic acid reveals a significant amount of monomers that effectively cooperate with hydrogen bonded linear chains
DOI: 10.1039/C4CP03999H
The electronic structure of perfluorodecalin studied by soft X-ray spectroscopy and electronic structure calculations
M. Agåker, C. Schwanke, T. Petit, K. M. Lange, J.-E. Rubensson
DOI: 10.1039/C4CP03153A
External electric field induced hydrogen storage/release on calcium-decorated single-layer and bilayer silicene
Er Hong Song, Sung Ho Yoo, Jae Joon Kim, Shiau Wu Lai, Qing Jiang, Sung Oh Cho
DOI: 10.1039/C4CP02638A
Direct measurements of the total rate constant of the reaction NCN + H and implications for the product branching ratio and the enthalpy of formation of NCN
Nancy Faßheber, Johannes Dammeier, Gernot Friedrichs
DOI: 10.1039/C4CP01107D
Polymorphic transformations and optical properties of graphene-based Ag-doped titania nanostructures
Anand Kumar Tripathi, Promod Kumar, Balasubramaniyan R., Manish Kumar Singh, Jin Suk Chung, Seung Hyun Hur, Arvind Agarwal
DOI: 10.1039/C4CP02982H
Tavorite-FeSO4F as a potential cathode material for Mg ion batteries: a first principles calculation
Jiandong Wu, Guohua Gao, Guangming Wu, Bo Liu, Huiyu Yang, Xiaowei Zhou, Jichao Wang
DOI: 10.1039/C4CP03176H
Probing the dynamics of plasmon-excited hexanethiol-capped gold nanoparticles by picosecond X-ray absorption spectroscopy
Thomas J. Penfold, Maarten Nachtegaal, Chris J. Milne, Majed Chergui
DOI: 10.1039/C4CP03301A
Complexation of DNA with ruthenium organometallic compounds: the high complexation ratio limit
Stéphane Despax, Fuchao Jia, Michel Pfeffer, Pascal Hébraud
DOI: 10.1039/C4CP00726C
Mechanical strain can switch the sign of quantum capacitance from positive to negative
Yuranan Hanlumyuang, Xiaobao Li
DOI: 10.1039/C4CP03131H
On subthreshold ionization of helium droplets, ejection of He+, and the role of anions
Michael Renzler, Matthias Daxner, Nikolaus Weinberger, Stephan Denifl, Paul Scheier
DOI: 10.1039/C4CP03236E
You might also like
What is the market or research trend for N-(4-Methoxybenzyl)-2-pyridinamine (CAS: 52818-63-0)?
N-(4-Methoxybenzyl)-2-pyridinamine (CAS: 52818-63-0) is increasingly being used ...
What precautions should be taken when handling Ethyl 4-(2-chlorophenyl)-1,3-thiazole-2-carboxylate (CAS: 1050507-06-6)?
When handling Ethyl 4-(2-chlorophenyl)-1,3-thiazole-2-carboxylate, appropriate p...
What regulatory guidelines apply to diethyldiselane (CAS: 628-39-7)?
Diethyldiselane (CAS: 628-39-7) is classified under the Globally Harmonized Syst...
What is the market or research trend for oxocopper (CAS: 12053-18-8)?
The market for oxocopper (CAS: 12053-18-8) is primarily driven by its use in cat...
What is the market or research trend for 5-{[(2-Methyl-2-propanyl)oxy]carbonyl}-5-azaspiro[2.4]heptane-7-carboxylic acid?
The market for 5-{[(2-Methyl-2-propanyl)oxy]carbonyl}-5-azaspiro[2.4]heptane-7-c...
What is 2-(1-Pyrrolidinyl)-4-pyridinamine (CAS: 35981-63-6)?
2-(1-Pyrrolidinyl)-4-pyridinamine is a chemical compound with the CAS number 359...
What are the physical and chemical properties of 2-(3-Pyridinyl)-1-azabicyclo[2.2.2]octane (CAS: 91556-75-1)?
2-(3-Pyridinyl)-1-azabicyclo[2.2.2]octane (CAS: 91556-75-1) is a crystalline sol...
How is (S)-Alpha-allyl-proline hydrochloride (CAS: 129704-91-2) typically synthesized?
(S)-Alpha-allyl-proline hydrochloride is usually synthesized via a Wittig reacti...
What is 3-Methyl-1,2-oxazole-5-carboxylic acid (CAS: 4857-42-5)?
3-Methyl-1,2-oxazole-5-carboxylic acid (CAS: 4857-42-5) is an organic compound w...
How is Lys-SMCC-DM1 (CAS: 1281816-04-3) typically synthesized?
Lys-SMCC-DM1 is synthesized via a multi-step process involving the coupling of S...
Source Journal
Chemical Communications

ChemComm publishes urgent research which is of outstanding significance and interest to experts in the field, while also appealing to the journal’s broad chemistry readership. Our communication format is ideally suited to short, urgent studies that are of such importance that they require accelerated publication. Our scope covers all topics in chemistry, and research at the interface of chemistry and other disciplines (such as materials science, nanoscience, physics, engineering and biology) where there is a significant novelty in the chemistry aspects. Major topic areas covered include: Analytical Chemistry Catalysis Chemical Biology and medicinal chemistry Computational Chemistry and Machine Learning Energy and sustainable chemistry Environmental Chemistry Green Chemistry Inorganic Chemistry Materials Chemistry Nanoscience Organic Chemistry Physical Chemistry Polymer Chemistry Supramolecular Chemistry











![1-oxaspiro[4.4]nonan-6-one structure 1-oxaspiro[4.4]nonan-6-one structure](https://static.chemtradehub.com/structs/134/134179-01-4-e051.webp)

![1,10-bis(3,5-dimethylphenyl)-12-hydroxy-4,5,6,7-tetrahydroiindeno[7,1-de:1',7'-fg][1,3,2]dioxaphosphocine 12-oxide structure 1,10-bis(3,5-dimethylphenyl)-12-hydroxy-4,5,6,7-tetrahydroiindeno[7,1-de:1',7'-fg][1,3,2]dioxaphosphocine 12-oxide structure](https://static.chemtradehub.com/structs/141/1412439-82-7-b9a9.webp)
