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Online since: July 2014
Authors: Hao Yu, Na Na Gong, Yan Wang, Ke Zhang, Zhong Qiu Cao, Shi Wei Wu
Adelhelm and P.E. de Jongh: Journal of Materials Chemistry, vol. 21 (2011) no. 8, p. 2417-2427
Ares-Fernández: Chemistry of Materials, vol. 20 (2007) no. 2, p. 376-378
M.Wang, et al: The Journal of Physical Chemistry C, vol. 117 (2013) no. 20, p. 10302-10307
Guilera, et al: The Journal of Physical Chemistry C, vol. 111 (2007) no. 28, p. 10700-10706
Li, et al: The Journal of Physical Chemistry C, vol. 116 (2012) no. 22, p. 11924-11938
Ares-Fernández: Chemistry of Materials, vol. 20 (2007) no. 2, p. 376-378
M.Wang, et al: The Journal of Physical Chemistry C, vol. 117 (2013) no. 20, p. 10302-10307
Guilera, et al: The Journal of Physical Chemistry C, vol. 111 (2007) no. 28, p. 10700-10706
Li, et al: The Journal of Physical Chemistry C, vol. 116 (2012) no. 22, p. 11924-11938
Online since: June 2015
Authors: Muhd Zu Azhan Yahya, Muhamad Kamil Yaakob, Fadhlul Wafi Badrudin, Oskar Hasdinor Hassan, Abdul Malik Marwan Bin Ali, Mohd Sazwan Affendi Rasiman, M.F.M. Taib
Chemistry of Materials 2013;25:4010–6
Journal of Materials Chemistry 2012;22:24526
Chemistry of Materials 2011;23:293–300
Pure and Applied Chemistry 1980;52
Chemistry of Materials 2007;19:3740–7.
Journal of Materials Chemistry 2012;22:24526
Chemistry of Materials 2011;23:293–300
Pure and Applied Chemistry 1980;52
Chemistry of Materials 2007;19:3740–7.
Online since: February 2024
Authors: Cheng Seong Khe, Kwok Feng Chong, Gomaa Abdelgawad Mohammed Ali, Eslam Atef Abdelaziz Aboelazm, Muhammad Fadhlullah Abd Shukur, Mohamed Shuaib Mohamed Saheed
Journal of Materials Chemistry A, 2021. 9(4): p. 1970-2017
Chemistry of Advanced Materials, 2018. 3(4)
Coordination Chemistry Reviews, 2018. 369: p. 15-38
Journal of Materials Chemistry A, 2020. 8(4): p. 1837-1848
Materials Chemistry and Physics, 2017. 197: p. 100-104.
Chemistry of Advanced Materials, 2018. 3(4)
Coordination Chemistry Reviews, 2018. 369: p. 15-38
Journal of Materials Chemistry A, 2020. 8(4): p. 1837-1848
Materials Chemistry and Physics, 2017. 197: p. 100-104.
Online since: July 2011
Authors: Junji Akimoto, Takeshi Okutani, Kunimitsu Kataoka, Norihito Kijima, Mitsumasa Sakao
About 40 % of K was eluted for 6 h without structure transformation.
Crystal structure of hollandite-type TiO2, which is viewed along the c-axis.
Table 1 lists the structure parameters of K0.08TiO2.
Solid State Chemistry, 178 (2005) , p. 2741
Solid State Chemistry, 81 (1989) , p. 78
Crystal structure of hollandite-type TiO2, which is viewed along the c-axis.
Table 1 lists the structure parameters of K0.08TiO2.
Solid State Chemistry, 178 (2005) , p. 2741
Solid State Chemistry, 81 (1989) , p. 78
Online since: May 2020
Authors: Nan Li, Yan Ling Gan, Su Ping Cui, Hong Xia Guo, Ya Li Wang, Shi Jie Liu, Yan Zheng
Results and Discussion
Chemical Structure of CSH.
Industrial & Engineering Chemistry Research, 2014, 53(8):3300-3304
Industrial & Engineering Chemistry Research, 2005, 44(17):6692-6700
Industrial & Engineering Chemistry Research, 2014, 53(10):4059-4066
Journal of Materials Chemistry A, 2014, 2(30):11759
Industrial & Engineering Chemistry Research, 2014, 53(8):3300-3304
Industrial & Engineering Chemistry Research, 2005, 44(17):6692-6700
Industrial & Engineering Chemistry Research, 2014, 53(10):4059-4066
Journal of Materials Chemistry A, 2014, 2(30):11759
Online since: June 2012
Authors: Quan Zheng Zhang
Synthesis of BaMoO4 nanocrystallites using Sol-gel process
Quanzheng Zhang1, a
1Department of Chemistry & Material Engineering, Hefei University, Hefei, 230022, PR China;
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian 350002, PR China
azqz@hfuu.edu.cn
Keywords: BaMoO4, Sol-gel, nanocrystallite.
As one of functional materials, molybdates with scheelite-type structure have attracted much attention for potential applications in photoluminescence, scintillators, photocatalyst hosts for lanthanide-activated lasers and humidity sensors[1-3].
The result is in accordance with crystal parameter of the tetragonal structure of BaMoO4[15]。
Li: Journal of Materials Chemistry, 17(2007), 2754 [7] L.
Alonso: Journal of Solid State Chemistry. 146(1999), 266
As one of functional materials, molybdates with scheelite-type structure have attracted much attention for potential applications in photoluminescence, scintillators, photocatalyst hosts for lanthanide-activated lasers and humidity sensors[1-3].
The result is in accordance with crystal parameter of the tetragonal structure of BaMoO4[15]。
Li: Journal of Materials Chemistry, 17(2007), 2754 [7] L.
Alonso: Journal of Solid State Chemistry. 146(1999), 266
Online since: October 2020
Authors: Svetlana Yu. Khashirova, Azamat A. Zhansitov, Kamila T. Shakhmurzova, Marina Balagova, Zhanna I. Kurdanova
Shetov, et al., Synthesis and properties of polyetheretherketones for 3d printing, Fibre Chemistry. 49 (2018) 414-419
Andre, Polymorphism in poly(aryl ether ketone)s, Macromolecular Chemistry and Physics. 198 (1997) 2089-2093
Sheng, Crystal structure and variation in unit cell parameters with crystallization temperatures of poly (etherketoneetherketone ketone)s containing metaphenyl links (PEKEKmK), Macromolecular Chemistry and Physysics. 201 (2000) 2756-2759
Shen, et al., Naphthalene-based poly(arylenetherketone) anion exchange membranes, Journal of Materials Chemistry. 1 (2013) 6481-6488
Synthesis of poly(ether ketone ether ketone ketone) (PEKEKK), Macromolecular chemistry and physics. 198 (1997) 1131-1146
Andre, Polymorphism in poly(aryl ether ketone)s, Macromolecular Chemistry and Physics. 198 (1997) 2089-2093
Sheng, Crystal structure and variation in unit cell parameters with crystallization temperatures of poly (etherketoneetherketone ketone)s containing metaphenyl links (PEKEKmK), Macromolecular Chemistry and Physysics. 201 (2000) 2756-2759
Shen, et al., Naphthalene-based poly(arylenetherketone) anion exchange membranes, Journal of Materials Chemistry. 1 (2013) 6481-6488
Synthesis of poly(ether ketone ether ketone ketone) (PEKEKK), Macromolecular chemistry and physics. 198 (1997) 1131-1146
Online since: July 2012
Authors: Saba Beg, Sadaf Haneefaa
[23] Beg, S., Ahmad, A., Sarita, Varshney, P., Colloid Chemistry and Electrochemistry, Russian Journal of Physical Chemistry, 80 (2006) 1141-1145
F., Journal of Physics and Chemistry of Solids, 67 (2006) 1643
A., Canadian Journal of Chemistry, 56 (1978) 2616
A., Canadian Journal of Chemistry, 63 (1985) 324
I., Ahmad, A., Journal of Solid State Chemistry, 122 (1996) 349
F., Journal of Physics and Chemistry of Solids, 67 (2006) 1643
A., Canadian Journal of Chemistry, 56 (1978) 2616
A., Canadian Journal of Chemistry, 63 (1985) 324
I., Ahmad, A., Journal of Solid State Chemistry, 122 (1996) 349
Online since: October 2016
Authors: Pek Lan Toh, Mohamed Ismail Mohamed-Ibrahim, Montha Meepripruk, Lee Sin Ang, Sulaiman Shukri
First Principles Study on the Stability and Electronic Structures
of 7,8-Dichloro-4-Oxo-4H-Chromene-3-Carbaldehyde
Pek-Lan Toh1,a *, Montha Meepripruk2,b, Lee Sin Ang3,c, Shukri Sulaiman4,d and Mohamed Ismail Mohamed-Ibrahim4,e
1Department of Electronic Engineering, Faculty of Engineering and Green Technology,
Universiti Tunku Abdul Rahman, 31900 Perak, Malaysia
2School of Chemistry, Institute of Science and Technology, Kampheang Phet Rajabhat University, Kampheang Phet 62000, Thailand
3Faculty of Applied Sciences, Universiti Teknologi Mara, 02600 Perlis, Malaysia
4Computational Chemistry and Physics Laboratory, School of Distance Education,
Universiti Sains Malaysia, 11800 Penang, Malaysia
apeklan_toh@yahoo.com.my, bmontha_mee@hotmail.com, canglee631@perlis.uitm.edu.my, dshukri@usm.my, emi-mi@usm.my
Keywords: Density Functional Theory (DFT), 7,8-Dichloro-4-Oxo-4H-Chromene-3-Carbaldehyde, geometric parameters, electronic structures, Mulliken atomic charges.
Several 3-Formylchromone derivatives could also serve as key synthetic building blocks for the molecular construction in the biological fields and various medical chemistry applications primarily [1-6].
Ishikawa, Crystal structure of 6-Fluoro-4-Oxo-4H-Chromene-3-Carbaldehyde, Acta Cryst.
Ishikawa, Crystal structure of 7-Bromo-4-Oxo-4H-Chromene-3-Carbaldehyde, Acta Cryst.
Molecular Structure 1072 (2014) 221-227
Several 3-Formylchromone derivatives could also serve as key synthetic building blocks for the molecular construction in the biological fields and various medical chemistry applications primarily [1-6].
Ishikawa, Crystal structure of 6-Fluoro-4-Oxo-4H-Chromene-3-Carbaldehyde, Acta Cryst.
Ishikawa, Crystal structure of 7-Bromo-4-Oxo-4H-Chromene-3-Carbaldehyde, Acta Cryst.
Molecular Structure 1072 (2014) 221-227
Online since: May 2011
Authors: Feng Cao, Guo Xiang Pan, Jin Tian Yang, Pei Song Tang, Hai Feng Chen, Zhe-Ming Ni, Sha Sha Lv
Density Functional Theory Investigating Interlayer Structure and
Ion-exchange Properties of Mg/Al Layered Double Hydroxides
Guoxiang Pan1,a, Feng Cao1, Jintian Yang1, Zheming Ni2,
Peisong Tang1, Haifeng Chen1, Shasha Lv1
1Department of Chemistry, Huzhou Teachers College, Huzhou 313000, P.R.
LDHs are wildly used in the field of catalysis, adsorption, PVC stability, drug deliver, oil chemistry.
The modeling layer structure of Mg6Al(OH)14+ is showed in Fig.1, the Al ion is surrounded by six Mg ions, and the layer structure is hexagonal.
The optimized structure models are given in Fig.2.
The structure parameters of isolated OH- lO-H=1.064 Å.
LDHs are wildly used in the field of catalysis, adsorption, PVC stability, drug deliver, oil chemistry.
The modeling layer structure of Mg6Al(OH)14+ is showed in Fig.1, the Al ion is surrounded by six Mg ions, and the layer structure is hexagonal.
The optimized structure models are given in Fig.2.
The structure parameters of isolated OH- lO-H=1.064 Å.