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Highly Tunable Electrical Properties in Undoped ZnO Grown by

Tuning of undoped ZnO thin film via plasma enhanced atomic layer deposition and its application for an inverted polymer solar cell. AIP Advances 2013, 3 (10), 102114.

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Jingbiao Cui

Nanomaterials for Solar Application. Research Overview. Research interest: Dr. Cui''s research is mainly focused on nanotechnology, semiconductor nanomaterials and

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‪Jingbiao Cui‬

Field effect transistor memory cell, memory device and method for manufacturing a field effect transistor memory cell

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Advanced Functional Materials: Vol 34, No 6

Bulk Heterojunction Thin Film Solar Cells. In article number 2308021, Ru Zhou, Lei Wan, Baomin Xu, and co-workers report bulk heterojunction antimony chalcogenide solar cells constructed by integrating

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Solar cell

A solar cell or photovoltaic cell (PV cell) is an electronic device that converts the energy of light directly into electricity by means of the photovoltaic effect. [1] It is a form of photoelectric cell, a

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Jingbiao Cui

Muatez Mohammed, Zhongrui Li, Jingbiao Cui, and Tar-pin Chen, "Acid-doped multi-wall carbon nanotube/n-Si heterojunctions for enhanced light harvesting", Solar Energy

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Enhanced Nucleation, Growth Rate, and Dopant Incorporation

Graphene-Enriched P3HT and Porphyrin-Modified ZnO Nanowire Arrays for Hybrid Solar Cell Applications. The Journal of Physical Chemistry C 2012, 116 (17), 9433

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A Simple Two-Step Electrodeposition of Cu2O/ZnO Nanopillar

This study demonstrates that electrodeposition, which is easily adapted to other chemical systems, is a promising technique for large-scale fabrication of low-cost nanopillar solar cells.

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Faculty Profile | Faculty Information System

Improving thin film solar cells with atomic layer deposited ZnO: Highly tunable buffer, intrinsic, and top contact layers in a single fabrication process. 2013 IEEE 39th Photovoltaic Specialists

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Solar cell | Definition, Working Principle, & Development

5 天之前· Solar cell, any device that directly converts the energy of light into electrical energy through the photovoltaic effect. The majority of solar cells are fabricated from silicon—with

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Enhanced Nucleation, Growth Rate, and Dopant Incorporation

Synthesis and characterization of ZnO nanowires grown on different seed layers: The application for dye-sensitized solar cells. Renewable Energy 2013, 60, 246-255.

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Jingbiao CUI | Professor | The University of Memphis, Tennessee

In this study, we have investigated various approaches to improve CIGS solar cells after thin film deposition. CIGS devices have been fabricated by a hydrazine solution based process.

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Enhanced Nucleation, Growth Rate, and Dopant Incorporation in

Synthesis and characterization of ZnO nanowires grown on different seed layers: The application for dye-sensitized solar cells. Renewable Energy 2013, 60, 246-255.

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A Simple Two-Step Electrodeposition of Cu2O/ZnO Nanopillar Solar Cells

This study demonstrates that electrodeposition, which is easily adapted to other chemical systems, is a promising technique for large-scale fabrication of low-cost nanopillar solar cells.

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Theory of solar cells

The theory of solar cells explains the process by which light energy in photons is converted into electric current when the photons strike a suitable semiconductor device.The theoretical

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Simultaneous Enhancement of Solar Cell Efficiency and

Deep HOMO polymers comprising anthracene units for bulk heterojunction solar cells. Journal of Industrial and Engineering Chemistry 2016, 33, 209-220.

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Scientific & Academic Publishing

Jingbiao Cui Editor-in-Chief of Nanoscience and Nanotechnology. Professor, Department of Physics, The University of Memphis, USA. "Graphene enhanced P3HT and porphyrin

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A Simple Two-Step Electrodeposition of Cu 2 O/ZnO Nanopillar Solar Cells

Solar radiation is a cheap and abundant energy for water remediation, hydrogen generation by water splitting, and CO2 reduction. Supported photocatalysts have to be tuned

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‪Jingbiao Cui‬

Graphene-enriched P3HT and porphyrin-modified ZnO nanowire arrays for hybrid solar cell applications

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Photonics & Spectroscopy | University of North Texas

Research in the field of Applied Physics is conducted by Jingbiao Cui, Gary Glass, Paolo Grigolini, Arkadii Krokhin, Yuankun Lin, limitations is the crucial step towards the

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Photonics & Spectroscopy | University of North Texas

The Optoelectronic Research Group, led by Professor Jingbiao Cui, uses both microscopy and spectroscopy to understand the structure and fundamental properties of semiconductors and

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Solar cells

Perovskite solar cells can be damaged when partially shaded, owing to currents flowing in reverse. Two research groups have now increased the breakdown voltage of the

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