Academic literature on the topic 'P-Chlorobenzophenone'

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Journal articles on the topic "P-Chlorobenzophenone"

1

Trivedi, Mahendra Kumar, Alice Branton, Dahryn Trivedi, Gopal Nayak, Khemraj Bairwa, and Snehasis Jana. "Physicochemical and Spectroscopic Characteristics of Biofield Treated p-Chlorobenzophenone." American Journal of Physical Chemistry 4, no. 6 (2015): 48–57. https://doi.org/10.11648/j.ajpc.20150406.12.

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p-Chlorobenzophenone (p-CBP) is the important chemical intermediate used for the synthesis of several pharmaceutical drugs like fenofibrate, cetirizine, alprazolam, and benzodiazepine. The aim of this study was set to evaluate the impact of biofield energy treatment on physicochemical and spectroscopic properties of p-CBP. The study was accomplished in two groups i.e. control and treated. The treated group was subjected to Mr. Trivedi’s biofield energy treatment. Subsequently, the control and treated samples of p-CBP were analyzed using X-ray diffraction (XRD), particle size analyzer, su
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2

Trivedi, Mahendra Kumar, Alice Branton, Dahryn Trivedi, Gopal Nayak, Khemra Bairwa, and Snehasis Jana. "Physicochemical and Spectroscopic Characteristics of Biofield Treated p-Chlorobenzophenone." American Journal of Physical Chemistry 4, no. 6 (2015): 48–57. https://doi.org/10.5281/zenodo.191285.

Full text
Abstract:
p-Chlorobenzophenone (p-CBP) is the important chemical intermediate used for the synthesis of several pharmaceutical drugs like fenofibrate, cetirizine, alprazolam, and benzodiazepine. The aim of this study was set to evaluate the impact of biofield energy treatment on physicochemical and spectroscopic properties of p-CBP. The study was accomplished in two groups i.e. control and treated. The treated group was subjected to Mr. Trivedi’s biofield energy treatment. Subsequently, the control and treated samples of p-CBP were analyzed using X-ray diffraction (XRD), particle size analyzer, su
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3

Bawane, S. P., and S. B. Sawant. "Liquid-Phase Catalytic Hydrogenation of p-Chlorobenzophenone to p-Chlorobenzhydrol over a 5 % Pd/C Catalyst." Chemical Engineering & Technology 27, no. 8 (2004): 914–20. http://dx.doi.org/10.1002/ceat.200402029.

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4

Kumar Trivedi, Mahendra. "Physicochemical and Spectroscopic Characteristics of Biofield Treated <i>p</i>-Chlorobenzophenone." American Journal of Physical Chemistry 4, no. 6 (2015): 48. http://dx.doi.org/10.11648/j.ajpc.20150406.12.

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5

Mahendra, Trivedi, Branton Alice, Trivedi Dahryn, and Nayak Gopal. "Physicochemical and Spectroscopic Characteristics of Biofield Treated p-Chlorobenzophenone." Science Publishing Group, June 19, 2017. https://doi.org/10.5281/zenodo.813627.

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Abstract:
p-Chlorobenzophenone (p-CBP) is the important chemical intermediate used for the synthesis of several pharmaceutical drugs like fenofibrate, cetirizine, alprazolam, and benzodiazepine. The aim of this study was set to evaluate the impact of biofield energy treatment on physicochemical and spectroscopic properties of p-CBP. The study was accomplished in two groups i.e. control and treated. The treated group was subjected to Mr. Trivedi's biofield energy treatment. Subsequently, the control and treated samples of p-CBP were analyzed using X-ray diffraction (XRD), particle size analyzer, surface
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6

Wang, Ji, Wenhui Wu, Wencai Zhang, Xiying Yang, and Jie Qiao. "The co-crystal structure of 4-chlorobenzophenone–salicylhydrazide(1/1), C20H17ClN2O3." Zeitschrift für Kristallographie - New Crystal Structures, October 29, 2024. http://dx.doi.org/10.1515/ncrs-2024-0319.

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Abstract:
Abstract C20H17ClN2O3, triclinic, P 1 ‾ $\overline{1}$ (no. 2), a = 6.2486(3) Å, b = 7.4746(4) Å, c = 19.0245(10) Å, α = 89.341(2)°, β = 85.998(2)°, γ = 83.651(2)°, V = 880.94(8) Å3, Z = 2, R gt(F) = 0.0351, wRref (F 2) = 0.0970, T = 289 K.
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