CHBC Faculty Publications
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| Title | UA Author | Publication Name | Year |
|---|
| Monolithic light concentration by core-shell TiO2 nanostructures templated by monodisperse polymer colloidal monolayers | Cherry, Rachel | ChemRxiv | 2023 |
| Monolithic light concentration by core-shell TiO2 nanostructures templated by monodisperse polymer colloidal monolayers | Conlin, Samuel K. | ChemRxiv | 2023 |
| Monolithic light concentration by core-shell TiO2 nanostructures templated by monodisperse polymer colloidal monolayers | Coridan, Robert Henry | ChemRxiv | 2023 |
| Monolithic light concentration by core-shell TiO2 nanostructures templated by monodisperse polymer colloidal monolayers | Mehrabi, Hamed | ChemRxiv | 2023 |
| Monolithic light concentration by core-shell TiO2 nanostructures templated by monodisperse polymer colloidal monolayers | Muhanga, Joseph Joel | ChemRxiv | 2023 |
| Electrochemical control of the morphology and functional properties of hierarchically structured, dendritic Cu surfaces | Conlin, Samuel K. | ChemRxiv | 2022 |
| Solvent-induced inversion of colloidal aggregation during electrophoretic deposition. | Coridan, Robert Henry | ChemRxiv | 2022 |
| Electrochemical control of the morphology and functional properties of hierarchically structured, dendritic Cu surfaces | Coridan, Robert Henry | ChemRxiv | 2022 |
| Electrochemical control of the morphology and functional properties of hierarchically structured, dendritic Cu surfaces | Gattis, Brayley S. | ChemRxiv | 2022 |
| Electrochemical control of the morphology and functional properties of hierarchically structured, dendritic Cu surfaces | Hollis, Thomas I. | ChemRxiv | 2022 |
| Solvent-induced inversion of colloidal aggregation during electrophoretic deposition. | Killenbeck, Jessica A. | ChemRxiv | 2022 |
| Electrochemical control of the morphology and functional properties of hierarchically structured, dendritic Cu surfaces | Mehrabi, Hamed | ChemRxiv | 2022 |
| Solvent-induced inversion of colloidal aggregation during electrophoretic deposition. | Reed DeMoulpied, Justin Rowan | ChemRxiv | 2022 |
| Solvent-induced inversion of colloidal aggregation during electrophoretic deposition. | Schichtl, Zebulon G. | ChemRxiv | 2022 |
| Solvent-induced inversion of colloidal aggregation during electrophoretic deposition. | Sharma, Babloo | ChemRxiv | 2022 |
| Solvent-induced inversion of colloidal aggregation during electrophoretic deposition. | Striegler, Susanne | ChemRxiv | 2022 |
| A C^N cycloplatinated(II) fluorido complex: photophysical studies and Csp3-F bond formation. | Alshami, Mia | ChemRxiv | 2020 |
| A C^N cycloplatinated(II) fluorido complex: photophysical studies and Csp3-F bond formation. | Beyzavi, Hudson | ChemRxiv | 2020 |
| A C^N cycloplatinated(II) fluorido complex: photophysical studies and Csp3-F bond formation. | Hu, Jiyun | ChemRxiv | 2020 |
| A C^N cycloplatinated(II) fluorido complex: photophysical studies and Csp3-F bond formation. | Sakamaki, Yoshie | ChemRxiv | 2020 |
| A C^N cycloplatinated(II) fluorido complex: photophysical studies and Csp3-F bond formation. | Shahsavari, Hamid Reza | ChemRxiv | 2020 |
| Surface curvature-quantized energy in spacetime-geometrized chemical physics | Tian, Z. Ryan | ChemRxiv | 2020 |
| Ipomoeassin F binds Sec61a to inhibit protein translocation. | Govindarajan, Mugunthan | ChemRxiv | 2019 |
| Ipomoeassin F binds Sec61a to inhibit protein translocation. | Hu, Zhijian | ChemRxiv | 2019 |
| Ipomoeassin F binds Sec61a to inhibit protein translocation. | Shi, Wei | ChemRxiv | 2019 |
| Ipomoeassin F binds Sec61a to inhibit protein translocation. | Sun, Xianwei | ChemRxiv | 2019 |
| Nanoparticles' and atoms' geometry-wave potential unified properties | Tian, Z. Ryan | ChemRxiv | 2019 |
| Ipomoeassin F binds Sec61a to inhibit protein translocation. | Zong, Guanghui | ChemRxiv | 2019 |