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  • Created 20 Jul 2017

2020:

Scott A. McClary, Mohammad M. Taheri, Daria D. Blach, Apurva A. Pradhan, Siming Li, Libai Huang, Jason B. Baxter, and Rakesh Agrawal. "Nanosecond Carrier Lifetimes in Solution-Processed Enargite (Cu3AsS4) Thin Films." Appl. Phys. Lett. 117, 16, 2020. https://doi.org/10.1063/5.0023246

Dataset: https://datacenterhub.org/deedsdv/publications/view/205

Scott A. McClary and Rakesh Agrawal. "Synthesis and characterization of semiconducting sinnerite (Cu6As4S9) thin films." MRS Communications. https://doi.org/10.1557/mrc.2020.11

Dataset: https://datacenterhub.org/deedsdv/publications/view/179

 

 

2019:

Swapnil D. Deshmukh*, Ryan G. Ellis*, Dwi Sutandar, David J. Rokke, and Rakesh Agrawal. "Versatile colloidal syntheses of metal chalcogenide nanoparticles from elemental precursors using amine-thiol chemistry." Chemistry of Materials 31, 21, 9087-9097 (2019). https://doi.org/10.1021/acs.chemmater.9b03401

Dataset: https://datacenterhub.org/deedsdv/main/view/186/experiments_dv/

Xin Zhao, Swapnil D. Deshmukh, David J. Rokke, Guanghui Zhang, Zhenwei Wu, Jeffrey T. Miller, and Rakesh Agrawal. "Investigating chemistry of metal dissolution in amine-thiol mixtures and exploiting it toward benighn ink formulation for metal chalcogenide thin films." Chemistry of Materials 31, 15, 5664-5682 (2019). https://doi.org/10.1021/acs.chemmater.9b01566

Dataset: https://datacenterhub.org/resources/14816

Caleb K. Miskin*, Swapnil D. Deshmukh*, Venkata Vasiraju, Kevin Bock, Gaurav Mittal, Angela Dubois-Camacho, Sreeram Vaddiraju, and Rakesh Agrawal. "Lead chalcogenide nanoparticles and their size-controlled self-assemblies for thermoelectric and photovoltaic applications." ACS Applied Nano MAterials 2, 1242-1252 (2019). https://doi.org/10.1021/acsanm.8b02125

Dataset: https://datacenterhub.org/resources/14814

Xinxing Yin, Scott A. McClary*, Zhaoning Song, Dewei Zhao, Brian K. Graeser, Changlei Wang, Niraj Shrestha, Xiaoming Wang, Cong Chen, Chongwen Li, Kamala K. Subedi, Randy J. Ellingson, Weihua Tang, Rakesh Agrawal, and Yanfa Yan. "A Cu3PS4 nanoparticle hole selective layer for efficient inverted perovskite solar cells." Journal of Materials Chemistry A 7, 4604-4610 (2019). https://dx.doi.org/10.1039/C8TA12100A

Dataset: https://datacenterhub.org/resources/14798

 

2018:

Brian Graeser and Rakesh Agrawal. "Pure phase synthesis of Cu3PS4 and Cu6PS5Cl for semiconductor applications." RSC Advances 8, 34094-34101 (2018). https://doi.org/10.1039/C8RA06241B

Dataset: https://datacenterhub.org/resources/14811

Scott A. McClary*, Robert B. Balow*, and Rakesh Agrawal. "Role of annealing atmosphere on the crystal structure and composition of tetrahedrite-tennantite alloy nanoparticles." Journal of Materials Chemistry C 6, 10538-10546 (2018). https://dx.doi.org/10.1039/C8TC02762E

Dataset: https://datacenterhub.org/resources/14764

 

2017:

Jie Ge, Paul J. Roland, Prakash Koirala, Weiwei Meng, James L. Young, Reese Petersen, Todd G. Deutsch, Glenn Teeter, Randy J. Ellingson, Robert W. Collins, and Yanfa Yan. "Employing Overlayers to Improve the Performance of Cu2BaSnS4 Thin Film based Photoelectrochemical Water Reduction Devices." Chemistry of Materials 29, 3, 916-920 (2017). https://dx.doi.org/10.1021/acs.chemmater.6b03347

Dataset: https://datacenterhub.org/resources/14760

Scott A. McClary, Joseph Andler, Carol A. Handwerker, and Rakesh Agrawal. “Solution-processed copper arsenic sulfide thin films for photovoltaic applications.” Journal of Materials Chemistry C 5, 6913-6916 (2017). https://dx.doi.org/10.1039/C7TC01920C

Dataset: https://datacenterhub.org/resources/14436

 

2016:

Jie Ge, Prakash Koirala, Corey R. Grice, Paul J. Roland, Yue Yu, Xinxuan Tan, Randy J. Ellingson, Robert W. Collins, and Yanfa Yan. "Oxygenated CdS Buffer Layers Enabling High Open-Circuit Voltages in Earth-Abundant Cu2BaSnS4 Thin-Film Solar Cells." Advanced Energy Materials 7, 1601803 (2016). https://dx.doi.org/10.1002/aenm.201601803

Dataset: https://datacenterhub.org/resources/14758

Jie Ge, Yue Yu, and Yanfa Ya. "Earth-Abundant Orthorhombic BaCu2Sn(SexS1-x)4 (x = 0.83) Thin Film for Solar Energy Conversion." ACS Energy Letters 1, 583-588 (2016).

Dataset: https://datacenterhub.org/resources/14762

*Denotes equal contribution to the manuscript.