Journal of Infrared and Millimeter Waves, Volume. 43, Issue 3, 344(2024)
Terahertz study on the porosity of porous traditional Chinese medicine tablets by effective medium models
[2] Li Z, Zhu L, Chen F C et al. The preparation, characterization, and application of porous core-shell composite particles produced with laboratory-scale spray dryer[J]. Drug Development and Industrial Pharmacy, 49, 217-231(2023).
[3] Juppo A M. Relationship between breaking force and pore structure of lactose, glucose and mannitol tablets[J]. International Journal of Pharmaceutics, 127, 95-102(1996).
[4] Westermarck S, Juppo A M, Kervinen L et al. Pore structure and surface area of mannitol powder, granules and tablets determined with mercury porosimetry and nitrogen adsorption[J]. European Journal of Pharmaceutics and Biopharmaceutics, 46, 61-68(1998).
[5] Peiponen K E, Silfsten P, Pajander J et al. Broadening of a THz pulse as a measure of the porosity of pharmaceutical tablets[J]. International Journal of Pharmaceutics, 447, 7-11(2013).
[6] Ervasti T, Silfsten P, Ketolainen J et al. A Study on the Resolution of a Terahertz Spectrometer for the Assessment of the Porosity of Pharmaceutical Tablets[J]. Applied Spectroscopy, 66, 319-323(2012).
[8] YANG Ri-Zhao, ZHAO Li-Jie, HUANG Yan-Sheng et al. Exploratory study on preparation of high drug loading granules with traditional Chinese medicine raw powder as carriers[J]. China Medicine, 46, 3356-3363(2021).
[9] LU Yao-Qi, FU Jin-Ping, XIONG Hui et al. Influence Mechanism of Particle Size of HPMC on Release of Theophylline from Hydrophilic Matrix Sustained-release Ta. Chinese Journal of Pharmaceuticals..
[10] YANG Hui-Zhi, YANG Ting, SUN Wan-Yang et al. Key technology of TCM quality consistency evaluation—Development of terahertz spectroscopy and evaluation of TCM consistency by THz quantum fingerprints[J]. Central South Pharmacy, 20, 1478-1486(2022).
[11] Zeitler J A, Taday P F, Gordon K C et al. Solid-State Transition Mechanism in Carbamazepine Polymorphs by Time-Resolved Terahertz Spectroscopy[J]. ChemPhysChem, 8, 1924-1927(2007).
[12] CHEN Yu-Gu, GUO Wei-Jia, LUO Yu et al. Microwave and terahertz properties of porous Ba 4(Sm,Nd,Bi)28/3Ti18O54 ceramics obtained by sacrificial template method[J]. Journal of the American Ceramic Society, 11, 5679-5688(2021).
[13] Chakraborty M, Bawuah P, Tan N et al. On the Correlation of Effective Terahertz Refractive Index and Average Surface Roughness of Pharmaceutical Tablets[J]. Journal of Infrared, Millimeter, and Terahertz Waves, 37, 776-785(2016).
[14] YANG Shuai, ZUO Jian, LIU Shang-Jian et al. Application of Terahertz Spectroscopy in the Detection of Chinese Medicine Processed Drugs of Rhubarb[J]. Spectroscopy and Spectral Analysis, 36, 3870-3874(2016).
[15] MA Pin, YANG Yu-Ping. Determination of moisture content of Gastrodia elata BI by terahertz spectroscopy[J]. Journal of Terahertz Science and Electronic Information Technology, 15, 26-28+53(2017).
[16] Madhavan D B, Kitching M, Mendham D S et al. Mid-infrared spectroscopy for rapid assessment of soil properties after land use change from pastures to Eucalyptus globulus plantations[J]. Journal of Environmental Management, 175, 67-75(2016).
[18] Song K S, Li L, Li S et al. Hyperspectral retrieval of phycocyanin in potable water sources using genetic algorithm-partial least squares (GA-PLS) modeling[J]. International Journal of Applied Earth Observation and Geoinformation, 18, 368-385(2012).
[19] Saeys W, Mouazen A M, Ramon H. Potential for Onsite and Online Analysis of Pig Manure using Visible and Near Infrared Reflectance Spectroscopy[J]. Biosystems Engineering, 91, 393-402(2005).
[20] Jiang H Z, Jiang X S, Ru Y et al. Sweetness Detection and Grading of Peaches and Nectarines by Combining Short- and Long-Wave Fourier-Transform Near-Infrared Spectroscopy[J]. Analytical Letters, 54, 1125-1144(2021).
[21] LUO Yu, WU Fei, SHEN Lan et al. Improvement on the tableting properties of traditional Chinese medicine extracts by fluid-bed coating and pore forming[J]. Acta Pharmaceutica Sinica, 55, 2728-2735(2020).
[22] Zhang C H, Zhang N, Pan D J et al. Experimental Study on Sensitivity of Porosity to Pressure and Particle Size in Loose Coal Media[J]. Energies, 11, 2274(2018).
[24] Garnett J C M. Colours in Metal Glasses and in Metallic Films[J]. Philosophical Transactions of the Royal Society A, 20, 385-420(1904).
[25] Bruggeman D A G. Berechnung verschiedener physikalischer Konstanten von heterogenen Substanzen. I. Dielektrizitätskonstanten und Leitfähigkeiten der Mischkörper aus isotropen Substanzen[J]. Annalen der Physik, 416, 665-679(1935).
[26] Nelson S O, You T S. Relationships between microwave permittivities of solid and pulverised plastics[J]. Journal of Physics D: Applied Physics, 23, 346-353(1990).
[27] Brovelli A, Cassiani G. Effective permittivity of porous media: a critical analysis of the complex refractive index model[J]. Geophysical Prospecting, 56, 715-727(2008).
[28] Scheller M, Jansen C, Koch M. Recent Optical and Photonic Technologies[M]. Rigeka, In Tech, pp231-250(2010).
[29] LI Qing, HE Ming-Xia. Application of Terahertz Spectroscopy in Porosity Detection of Polyolefin Films[J]. Laser Optoelectronics Progress, 60, 456-462(2023).
Get Citation
Copy Citation Text
Xu LI, Meng-Yuan ZHANG, Wen-Yue ZHAO, Jian ZUO, Wei-Feng ZHU, Zhe LI, Yu-Lei SHI, Cun-Lin ZHANG. Terahertz study on the porosity of porous traditional Chinese medicine tablets by effective medium models[J]. Journal of Infrared and Millimeter Waves, 2024, 43(3): 344
Category: Research Articles
Received: Jul. 27, 2023
Accepted: --
Published Online: Apr. 29, 2024
The Author Email: Jian ZUO (zuoj@cnu.edu.cn), Zhe LI (lizhezd@163.com)