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Online since: March 2026
Authors: Yin Fong Yeong, Mohamad Azmi Bustam, Norwahyu Jusoh, Marhaina Ismail
Such an approach offers valuable insights into the structure-property relationship, thereby guiding the rational design of gallate-based MOFs for enhanced CO2 capture applications.
This is attributed to that the structure can be adjusted, enhancing their capacity for gas storage that is very suitable for storage and release of gas applications.
Zhao, Trace carbon dioxide capture by metal–organic frameworks, ACS Sustainable Chemistry & Engineering 7(1) (2018) 82-93
Yaghi, Secondary building units as the turning point in the development of the reticular chemistry of MOFs, Science Advances 4(10) (2018) eaat9180
Morsali, Linker functionalized metal-organic frameworks, Coordination Chemistry Reviews 399 (2019) 213023.
This is attributed to that the structure can be adjusted, enhancing their capacity for gas storage that is very suitable for storage and release of gas applications.
Zhao, Trace carbon dioxide capture by metal–organic frameworks, ACS Sustainable Chemistry & Engineering 7(1) (2018) 82-93
Yaghi, Secondary building units as the turning point in the development of the reticular chemistry of MOFs, Science Advances 4(10) (2018) eaat9180
Morsali, Linker functionalized metal-organic frameworks, Coordination Chemistry Reviews 399 (2019) 213023.
Online since: August 2013
Authors: Yury Pozhidaev, Evgenya Sipkina, Alexandra Chesnokova, Nikolay Ivanov, Oksana Lebedeva
Pestunovich: Russian Journal of General Chemistry.
Voronkov: Russian Journal of General Chemistry.
Trofimov: Russian Journal of Applied Chemistry.
Voronkov: Russian Journal of Applied Chemistry.
Rusanov: Russian Journal of General Chemistry.
Voronkov: Russian Journal of General Chemistry.
Trofimov: Russian Journal of Applied Chemistry.
Voronkov: Russian Journal of Applied Chemistry.
Rusanov: Russian Journal of General Chemistry.
Online since: July 2014
Authors: A. Saravanapandi Solairajan, P. Ganesh Kumar, S. Alexraj, P. Vijaya Rajan
Nanoscience is primarily deals with synthesis, exploration, exploitation and of Nano structured materials.
Cheetham, Journal of Materials Chemistry, 11, 2887(2001)
[3] A.Ravikrishna, Engineering Chemistry, Sri Krishna Hi-Tech Publishing Company, 10 Edition, Chennai, July 2009
Karthikeyan, Engineering Chemistry, Shiv Publications, Chennai, July 2007
Karthikeyan, Engineering Chemistry, Shiv Publications, Chennai, July 2007
Cheetham, Journal of Materials Chemistry, 11, 2887(2001)
[3] A.Ravikrishna, Engineering Chemistry, Sri Krishna Hi-Tech Publishing Company, 10 Edition, Chennai, July 2009
Karthikeyan, Engineering Chemistry, Shiv Publications, Chennai, July 2007
Karthikeyan, Engineering Chemistry, Shiv Publications, Chennai, July 2007
Online since: March 2024
Authors: Riastuti Fidyaningsih, Ade Sholeh Hidayat, Indriasari Indriasari, Saddam Husin, Herri Susanto, Idvan Idvan, Mahendra Anggaravidya, Dewi Kusuma Arti, Wahyu Tri Utami, Galih Taqwatomo, Lies Agustine Wisojodharmo, Akhmad Amry, Mohamad Soleh Iskandar, Dita Adi Saputra, Muhammad Dikdik Gumelar
Abrasion resistance is also influenced by filler structure, particle size, and rubber-filler adhesion [15].
EPDM has an unsaturated backbone structure, causing poor compatibility with carbon black.
Ikeda, Chemistry, Manufacture and Applications of Natural Rubber.
Maria, Natural Rubber Materials Volume 1: Blends and IPNs, Royal Society of Chemistry, 2013, pp.
Noordermeer, Mixing, Curing and Reinforcement of Nr/Br/Epdm Blends For Tire Sidewall Applications, Rubber Chemistry and Technology, 82(3), 2009, pp. 379-399.
EPDM has an unsaturated backbone structure, causing poor compatibility with carbon black.
Ikeda, Chemistry, Manufacture and Applications of Natural Rubber.
Maria, Natural Rubber Materials Volume 1: Blends and IPNs, Royal Society of Chemistry, 2013, pp.
Noordermeer, Mixing, Curing and Reinforcement of Nr/Br/Epdm Blends For Tire Sidewall Applications, Rubber Chemistry and Technology, 82(3), 2009, pp. 379-399.
Online since: January 2012
Authors: Ashok Kumar, Dervis E. Demirocak, Sarada Kuravi, Manoj K. Ram, Chand K. Jotshi, Sesha Srinivasan, Yogi Goswami, Elias Stefanakos
On the other hand, PANI-HYP showed the highest weight loss up to 200°C which might be as a result of impurities trapped within its porous structure.
Fuel Chemistry Division Preprints 2002;47:790–1
The Journal of Physical Chemistry B 2008;112:16431-6
Chemistry of materials 2007;19:2034-48
Journal of Materials Chemistry 2007;17:4989-97
Fuel Chemistry Division Preprints 2002;47:790–1
The Journal of Physical Chemistry B 2008;112:16431-6
Chemistry of materials 2007;19:2034-48
Journal of Materials Chemistry 2007;17:4989-97
Online since: August 2013
Authors: Qing Liu, Ling Tao Mao, Yong Liang Wang, Nai Hao
Bale [5] first applies fractal geometry to coal submicroscopic structure, pioneering research coal micropore fractal structure features as the first of its kind.
Study on fractal dimensions of coal and their pore structures [J].
Journal of Fuel Chemistry and Technology, 1996,24(1):81-86.
(in Chinese) [13] Avnir D, The Fractal Approach to Heterogeneous Chemistry[M], Wiley, New York, 1989
Quantitative analysis of pore structure by fractal analysis[J].
Study on fractal dimensions of coal and their pore structures [J].
Journal of Fuel Chemistry and Technology, 1996,24(1):81-86.
(in Chinese) [13] Avnir D, The Fractal Approach to Heterogeneous Chemistry[M], Wiley, New York, 1989
Quantitative analysis of pore structure by fractal analysis[J].
Online since: July 2015
Authors: Run Hua Fan, Xu Ai Wang, Gui Fang Liu, Kai Sun, Min Chen
When n(OH-)/n(NO3-) ratio is 2,all the peaks can be indexed as M-type hexagonal structure and no impurity phases are detected.
It can be seen that barium ferrite of hexagonal structure has been prepared.
Materials Chemistry and Physics, 2011, 127(3): 415-419
Effect of hydrothermal synthesis environment on the particle morphology, chemistry and magnetic properties of barium hexaferrite[J].
Journal of Materials Chemistry C, 2013, 1(8): 1633-1637.
It can be seen that barium ferrite of hexagonal structure has been prepared.
Materials Chemistry and Physics, 2011, 127(3): 415-419
Effect of hydrothermal synthesis environment on the particle morphology, chemistry and magnetic properties of barium hexaferrite[J].
Journal of Materials Chemistry C, 2013, 1(8): 1633-1637.
Synthesis and Photophysics of Two Dipolar Copolymers Containing Hole-Transporting Unit and Alq3 Unit
Online since: August 2010
Authors: Jian Xin Luo, Li Yan Liang, Man Geng Lu
Synthesis and Photophysics of Two Dipolar Copolymers Containing
Hole-Transporting Unit and Alq3 Unit
Luo J X 1, a, Liang L Y 2, b
, Lu M G
3, c
1
Guangzhou Institute of Chemistry, Chinese Academy of Science, 368 Xingke Road,
Guangzhou, China;
2
Guangzhou Institute of Chemistry, Chinese Academy of Science, 368 Xingke Road,
Guangzhou, China;
3
Guangzhou Institute of Chemistry, Chinese Academy of Science, 368 Xingke Road,
Guangzhou, China;
a
Email: luojianxin392 @163.com, b Email: lyliang @gic.ac.cn, c Email: mglu @gic.ac.cn
Key words: Alq3, hole-transporting, energy transfer
Abstact: Two novel copolymers combining the electron-transporting group (Alq3),
hole-transporting group (carbazole and phenothiazine) and chromophore had been obtained.
Fig. 1 The structure of the copolymers Fig. 2 IR spectrum of the copolymers The copolymers exhibited good solubility in a wide range of organic solvents, such as toluene, THF, chloroform, DMF and DMSO.
The structure of the copolymers was shown in Fig. 1 and characterized by 1H NMR and IR spectrum.
Fig. 1 The structure of the copolymers Fig. 2 IR spectrum of the copolymers The copolymers exhibited good solubility in a wide range of organic solvents, such as toluene, THF, chloroform, DMF and DMSO.
The structure of the copolymers was shown in Fig. 1 and characterized by 1H NMR and IR spectrum.
Online since: July 2012
Authors: Jiang Ping Meng
The structures of these novel compounds were measured by 1H NMR, IR and mass spectrum.
Introduction The chemistry of the benzimidazolium compounds is of great interest in different areas such as catalysis, biological processes, pharmacy and agriculture[1].
In order to treatment this increasing resistance phenomenon, it might be urgently needed to develop a lot of novel agents with original chemical structures.
Result and Discussion 2.1 Chemistry 2.1.1 Preparation of benzimidazole compounds 3a ~ 3b.
We are thankful to the School of Chemistry and Chemical Engineering of Southwest University provided support for doing antibacterial and antifungal tests.
Introduction The chemistry of the benzimidazolium compounds is of great interest in different areas such as catalysis, biological processes, pharmacy and agriculture[1].
In order to treatment this increasing resistance phenomenon, it might be urgently needed to develop a lot of novel agents with original chemical structures.
Result and Discussion 2.1 Chemistry 2.1.1 Preparation of benzimidazole compounds 3a ~ 3b.
We are thankful to the School of Chemistry and Chemical Engineering of Southwest University provided support for doing antibacterial and antifungal tests.
Online since: April 2016
Authors: Bin Lu, Mei Qin, Ping Li, Yu Wei, Shu Ping Wang
Therefore, the synthesis of uniform δ-FeOOH and the phase transformation of δ-FeOOH have become important research interests in modern materials chemistry [3].
Results and discussion Structure and morphology of δ-FeOOH nanosheets.
Fig. 1 reveals the typical size and morphology of the nanosheet-like structures prepared by using NH3·H2O as a precipitant at pH 10.
In the structure of δ-FeOOH, the cell is hexagonal and reflects the hexagonal close packed (hcp) stacking of anions [12].
Franger, Chemistry and electrochemistry of nanostructured iron oxyhydroxides, J.
Results and discussion Structure and morphology of δ-FeOOH nanosheets.
Fig. 1 reveals the typical size and morphology of the nanosheet-like structures prepared by using NH3·H2O as a precipitant at pH 10.
In the structure of δ-FeOOH, the cell is hexagonal and reflects the hexagonal close packed (hcp) stacking of anions [12].
Franger, Chemistry and electrochemistry of nanostructured iron oxyhydroxides, J.