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Materials Science and Engineering B: Solid-State Materials for Advanced Technology, ISSN 0921-5107, 2013, Volume 178, Issue 20, pp. 1371 - 1379
Nanocomposites of coupled ZnO-SnO photocatalysts were synthesized by the coprecipitation method and were characterized by X-ray diffraction, UV-vis diffuse... 
Photocatalysis | ZnO-SnO | Coprecipitation | Heterojunction | Methylene blue
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 02/2012, Volume 181-182, pp. 196 - 205
Zn(OH) /Sn(OH) was prepared by continuously pumping two aqueous solutions of ZnSO /SnCl and NaOH into a rotating packed bed (RPB), where co-precipitation... 
ZnO/SnO | Rotating packed bed | Photocatalysts | Methylene blue
Journal Article
Materials Letters, ISSN 0167-577X, 08/2015, Volume 160, pp. 227 - 230
Actinomorphic ZnO/SnO 2 core-shell nanorods (NRs) were synthesized via a facile two-step synthesis method, in which actinomorphic ZnO NRs (core) with the... 
Core-shell structure | Composite materials | Sensors | Actinomorphic morphology | ZnO/SnO 2
Journal Article
Applied Surface Science, ISSN 0169-4332, 02/2014, Volume 292, pp. 111 - 116
Novel ZnO/SnO core-shell nanoneedle arrays were developed with a two-step synthesis strategy. The strategy combines two processes: a hydrothermal synthesis of... 
ZnO/SnO | High conversion efficiency | Core-shell nanoneedle | A larger surface area
Journal Article
Journal of Electronic Materials, ISSN 0361-5235, 04/2019, Volume 48, Issue 4, pp. 2373 - 2381
Journal Article
Phase Transitions, ISSN 0141-1594, 11/2015, Volume 88, Issue 11, pp. 1122 - 1136
Journal Article
Journal of Industrial and Engineering Chemistry, ISSN 1226-086X, 07/2012, Volume 18, Issue 4, pp. 1233 - 1236
In this work, coupled ZnO/SnO photocatalysts were prepared in a rotating packed bed (RPB) via co-precipitation. The precursors of coupled ZnO/SnO... 
Decolorization | ZnO/SnO | Rotating packed bed | Photocatalysts
Journal Article
Sensors & Actuators: A. Physical, ISSN 0924-4247, 2009, Volume 154, Issue 1, pp. 175 - 179
ZnO–SnO nanofibers have been developed through in situ electrospinning technique and calcination. Poly(vinyl pyrrolidone) (PVP) is selected as fiber template.... 
Electrospinning | ZnO–SnO 2 Nanofibers | Ethanol sensor
Journal Article
Sensors & Actuators: B. Chemical, ISSN 0925-4005, 2008, Volume 134, Issue 2, pp. 360 - 366
Nanocrystalline ZnO–SnO composites as NO gas sensor materials have been successfully synthesized through a reverse microemulsion method for controlled grain... 
Reverse microemulsion | Sensing properties | ZnO–SnO 2 nanocomposite | NO 2 sensor
Journal Article
Applied Surface Science, ISSN 0169-4332, 2009, Volume 255, Issue 16, pp. 7343 - 7347
We proposed in the present work that large-scale synthesis of sensitive ZnO–SnO nanofibres which can be obtained via a simple electrospinning method. Scanning... 
Electrospinning | ZnO–SnO 2 nanofiber | Toluene sensor
Journal Article
Sensors & Actuators: B. Chemical, ISSN 0925-4005, 2010, Volume 148, Issue 2, pp. 595 - 600
The ZnO–SnO core–shell nanowires (NWs) were synthesized by a continuous two-step vapor growth method at different synthesis temperatures. A crystalline 15–20... 
C 2H 5OH sensor | Core–shell nanowires | Gas sensors | ZnO–SnO 2 | NO 2 sensor
Journal Article
Journal of Electrical Engineering and Technology, ISSN 1975-0102, 07/2012, Volume 7, Issue 4, pp. 596 - 600
Journal Article
Advanced Materials Research, ISSN 1022-6680, 2012, Volume 562-564, pp. 435 - 438
Conference Proceeding
Gaodeng Xuexiao Huaxue Xuebao/Chemical Journal of Chinese Universities, ISSN 0251-0790, 06/2012, Volume 33, Issue 6, pp. 1264 - 1270
Journal Article
Applied Catalysis B, Environmental, ISSN 0926-3373, 2008, Volume 84, Issue 3, pp. 699 - 705
Sn -containing LDH was prepared using the co-precipitation method at constant pH, and characterized using X-ray diffraction, UV–vis diffuse reflectance... 
Sn 4+ containing LDHs | Photocatalysis | Charge separation | Methyl orange | ZnO/SnO 2 systems
Journal Article
World Academy of Science, Engineering and Technology, ISSN 2010-376X, 04/2011, Volume 76, pp. 138 - 140
Journal Article
Nanoscale Research Letters, ISSN 1931-7573, 12/2016, Volume 11, Issue 1, pp. 1 - 6
Journal Article
Chinese Journal of Inorganic Chemistry, ISSN 1001-4861, 08/2005, Volume 21, Issue 8, pp. 1143 - 1148
Journal Article
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