Academic literature on the topic 'Bismuth oxyiodide'

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Journal articles on the topic "Bismuth oxyiodide"

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Luo, Shunqin, Jinjia Xu, Zijing Li, Chen Liu, Jiawei Chen, Xin Min, Minghao Fang, and Zhaohui Huang. "Correction: Bismuth oxyiodide coupled with bismuth nanodots for enhanced photocatalytic bisphenol A degradation: synergistic effects and mechanistic insight." Nanoscale 9, no. 42 (2017): 16485. http://dx.doi.org/10.1039/c7nr90222k.

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Correction for ‘Bismuth oxyiodide coupled with bismuth nanodots for enhanced photocatalytic bisphenol A degradation: synergistic effects and mechanistic insight’ by Shunqin Luo et al., Nanoscale, 2017, DOI: 10.1039/c7nr05320g.
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Han, Aijuan, Jiulong Sun, Xuanhao Lin, Cheng-Hui Yuan, Gaik Khuan Chuah, and Stephan Jaenicke. "Influence of facets and heterojunctions in photoactive bismuth oxyiodide." RSC Advances 5, no. 107 (2015): 88298–305. http://dx.doi.org/10.1039/c5ra18236k.

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Kwolek, Przemysław, and Konrad Szaciłowski. "Photoelectrochemistry of n-type bismuth oxyiodide." Electrochimica Acta 104 (August 2013): 448–53. http://dx.doi.org/10.1016/j.electacta.2012.10.001.

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Lee, Ai-Hsuan, Yi-Chuen Wang, and Chiing-Chang Chen. "Composite photocatalyst, tetragonal lead bismuth oxyiodide/bismuth oxyiodide/graphitic carbon nitride: Synthesis, characterization, and photocatalytic activity." Journal of Colloid and Interface Science 533 (January 2019): 319–32. http://dx.doi.org/10.1016/j.jcis.2018.08.008.

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Jagt, Robert A., Tahmida N. Huq, Katharina M. Börsig, Daniella Sauven, Lana C. Lee, Judith L. MacManus-Driscoll, and Robert L. Z. Hoye. "Controlling the preferred orientation of layered BiOI solar absorbers." Journal of Materials Chemistry C 8, no. 31 (2020): 10791–97. http://dx.doi.org/10.1039/d0tc02076a.

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Bismuth oxyiodide has anisotropic transport properties, and optimal device performance requires control over its preferred orientation. We find that this preferred orientation can be finely tuned through the precursor and substrate temperatures.
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Park, Seohyun, Nanasaheb M. Shinde, Pritamkumar V. Shinde, Damin Lee, Je Moon Yun, and Kwang Ho Kim. "Chemically grown bismuth-oxy-iodide (BiOI/Bi9I2) nanostructure for high performance battery-type supercapacitor electrodes." Dalton Transactions 49, no. 3 (2020): 774–80. http://dx.doi.org/10.1039/c9dt04365a.

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A dual phase bismuth oxyiodide (BiOI/Bi9I2) nanostructure battery type supercapacitor electrode is synthesized using chemical bath deposition (CBD) and the capacitance and energy/power density (ED/PD) reported.
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Chou, Shang-Yi, Chiing-Chang Chen, Yong-Ming Dai, Jia-Hao Lin, and Wenlian William Lee. "Novel synthesis of bismuth oxyiodide/graphitic carbon nitride nanocomposites with enhanced visible-light photocatalytic activity." RSC Advances 6, no. 40 (2016): 33478–91. http://dx.doi.org/10.1039/c5ra28024a.

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The first systematic synthetic study of bismuth oxyiodide/graphitic carbon nitride (BiOxIy/g-C3N4) nanocomposite preparation using a controlled hydrothermal method is reported.
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Hsu, Chia-Lun, Chia-Wen Lien, Scott G. Harroun, Rini Ravindranath, Huan-Tsung Chang, Ju-Yi Mao, and Chih-Ching Huang. "Metal-deposited bismuth oxyiodide nanonetworks with tunable enzyme-like activity: sensing of mercury and lead ions." Materials Chemistry Frontiers 1, no. 5 (2017): 893–99. http://dx.doi.org/10.1039/c6qm00149a.

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The enzyme-like activity of bismuth oxyiodide nanonetworks are tunable by in situ deposition with metal or metal oxide nanoparticles and the doped nanonetworks can selective detect Hg2+ and Pb2+ ions.
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Chen, Chiing-Chang, Jing-Ya Fu, Jia-Lin Chang, Shiuh-Tsuen Huang, Tsung-Wen Yeh, Jiun-Ting Hung, Peng-Hao Huang, Fu-Yu Liu, and Li-Wen Chen. "Bismuth oxyfluoride/bismuth oxyiodide nanocomposites enhance visible-light-driven photocatalytic activity." Journal of Colloid and Interface Science 532 (December 2018): 375–86. http://dx.doi.org/10.1016/j.jcis.2018.07.130.

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Alam, Kazi M., Pawan Kumar, Piyush Kar, Ujwal K. Thakur, Sheng Zeng, Kai Cui, and Karthik Shankar. "Enhanced charge separation in g-C3N4–BiOI heterostructures for visible light driven photoelectrochemical water splitting." Nanoscale Advances 1, no. 4 (2019): 1460–71. http://dx.doi.org/10.1039/c8na00264a.

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Heterojunctions of the low bandgap semiconductor bismuth oxyiodide (BiOI) with bulk multilayered graphitic carbon nitride (g-C3N4) and few layered graphitic carbon nitride sheets (g-C3N4-S) are synthesized and investigated as an active photoanode material for sunlight driven water splitting.
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Dissertations / Theses on the topic "Bismuth oxyiodide"

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Zhang, Liping. "Development of Bismuth Oxide-Based Materials for Iodide Capture and Photocatalysis." Kent State University / OhioLINK, 2018. http://rave.ohiolink.edu/etdc/view?acc_num=kent1542652670479038.

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Shang-Yi, Chou, and 周尚毅. "The Characterization of Bismuth Oxyiodide/Graphene Oxide (or Graphitic Carbon Nitride) Composites and their Photocatalytic Degradation of the Organic Pollutants." Thesis, 2015. http://ndltd.ncl.edu.tw/handle/05426627624379743556.

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碩士
國立臺中教育大學
科學教育與應用學系科學教育碩士班
103
In this study, a series of the bismuth oxyiodide composite graphene oxide (GO) or graphitic carbon nitride (g-C3N4) are prepared using autoclave hydrothermal methods. In the preparation procedure, g-C3N4 is synthesized by calcinations at 540℃ in muffle furnace , and graphene oxide is synthesized by Hummer method modified. Graphene and g-C3N4 are the two-dimensional atomic crystal available for enhancing electron-hole transfer surface and reduce the recombination rate of photocatalyst. Bismuth oxyiodide, with different crystalline in different pH vm alue, can synthesize different bismuth oxyiodide composite graphene or g-C3N4 photocatalysts. The structures and morphologies of BiOxIy/g-C3N4 or graphene oxide photocatalysts are characterized by XRD, FE-TEM, SEM-EDS, HR-XPS, DR-UV, BET, EPR and PL. Discuss different crystalline bismuth oxyiodide composite graphene or g-C3N4 affect the photocatalytic efficiency. Crystal Violet and Salicylic acid is a common organic pollutants in the environment. The study is useful for photocatalytic degradation of organic samples and use HPLC-PDA-MS for separation and identification of degradation intermediates. The study is useful for degrading the organic compounds in the future applications of environmental pollution and control.
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Book chapters on the topic "Bismuth oxyiodide"

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Sharma, I. D., I. D. Sharma, Chander Kant, A. K. Sharma, Ravi Ranjan Pandey, and K. K. Saini. "A Simple Route to Synthesize Nanostructures of Bismuth Oxyiodide and Bismuth Oxychloride (BiOI/BiOCl) Composite for Solar Energy Harvesting." In Trends and Applications in Advanced Polymeric Materials, 83–100. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2017. http://dx.doi.org/10.1002/9781119364795.ch5.

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Conference papers on the topic "Bismuth oxyiodide"

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Rieger, Sebastian, Tim Fürmann, Jacek K. Stolarczyk, and Jochen Feldmann. "Optically Induced Coherent Phonons in Bismuth Oxyiodide (BiOI) Nanoplatelets." In Internet NanoGe Conference on Nanocrystals. València: Fundació Scito, 2021. http://dx.doi.org/10.29363/nanoge.incnc.2021.047.

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