近期论文
查看导师新发文章
(温馨提示:请注意重名现象,建议点开原文通过作者单位确认)
Dependence of thermoelectric effects in molecular junctions on the topography of the bottom electrodes Peng, W.; Cao, Z.; Chen, N.; Xie, Y.; Li, Y., Dependence of thermoelectric effects in molecular junctions on the topography of the bottom electrodes. J. Mater. Chem. A 2022, 10, 23304.
Molecular diodes with tunable threshold voltage based on π‐extended tetrathiafulvalene Lin, J. L.; Cao, Z.; Bai, X.; Chen, N.; Li, C.; Xiao, X.; Wang, L.; Li, Y., Molecular diodes with tunable threshold voltage based on π‐extended tetrathiafulvalene. Adv. Mater. Interfaces 2022, 9, 2201238.
Large cooperative effects in tunneling rates across van der Waals coupled binary self-assembled monolayers Li, Y.; Wang, D.; Peng, W.; Jiang, L.; Yu, X.; Thompson, D.; Nijhuis, C. A., Large cooperative effects in tunneling rates across van der Waals coupled binary self-assembled monolayers. Nano Today 2022, 44, 101497.
Characterizing Chelation at Surfaces by Charge Tunneling Li, Y.; Root, S. E.; Belding, L.; Park, J.; Rawson, J.; Yoon, H. J.; Baghbanzadeh, M.; Rothemund, P.; Whitesides, J. Am. Chem. Soc. 2021, 143, 5967-5977.
Conformation, and Charge Tunneling through Molecules in SAMs Belding, L.; Root, S. E.; Li, Y.; Park, J.; Baghbanzadeh, M.; Rojas, E.; Pieters, P. F.; Yoon, H. J.; Whitesides, G. M., J. Am. Chem. Soc. 2021, 143, 3481-3493.
Rectification in Molecular Tunneling Junctions Based on Alkanethiolates with Bipyridine–Metal Complexes Park, J.; Belding, L.; Li, Y.; Mousavi, M.; Root, S. E.; Yoon, H.; Whitesides, G. M. , J. Am. Chem. Soc. 2021, 143, 2156–2163.
Charge Transport through Self-Assembled Monolayers of Monoterpenoids Cafferty, B. J.; Yuan, L.; Baghbanzadeh, M.; Rappoport, D.; Beyzavi, M. H.; Whitesides, G. M. , Angew. Chem. Int. Ed. 2019, 58, 8097-8102.
Dipole-Induced Rectification across AgTS/SAM//Ga2O3/EGaIn Junctions Baghbanzadeh, M.; Belding, L.; Yuan, L.; Park, J.; Al-Sayah, M. H.; Bowers, C. M.; Whitesides, G. M. , J. Am. Chem. Soc. 2019, 141, 8969-8980.
Unraveling the Failure Modes of Molecular Diodes: The Importance of the Monolayer Formation Protocol and Anchoring Group to Minimize Leakage Currents Wang, L.#; Yuan, L.#; Jiang, L.; Cao, L.; Nijhuis, C. A. , J. Phys. Chem. C 2019, 123, 19759-19767.
The Supramolecular Structure and van der Waals Interactions Affect the Electronic Structure of Ferrocenyl-Alkanethiolate SAMs on Gold and Silver Electrodes Cao, L.#; Yuan, L.#; Thompson, D.; Hamoudi, H.; Qi, D.C.; Nijhuis, C. A. , Nanoscale Adv. 2019, 1, 1991-2002.
The Rate of Charge Tunneling in EGaIn Junctions Is Not Sensitive to Halogen Substituents at the Self-Assembled Monolayer//Ga2O3 Interface Baghbanzadeh, M.; Pieters, P. F.; Yuan, L.; Collison, D.; Whitesides, G. M. , ACS Nano, 2018, 12, 10221-10230.
Influence of the Donor Unit on the Rectification Ratio in Tunnel Junctions based on Donor–Acceptor SAMs Using PTM Units as Acceptors Souto, M.; Díez-Cabanes, V.; Yuan, L.; Kyvik, A. R.; Ratera, I.; Nijhuis, C. A.; Cornil, J.; Veciana, J. , Phys. Chem. Chem. Phys. 2018, 20, 25638-25647.
Ion Sensing with Thread-based Potentiometric Electrodes Mousavi, M. P. S.; Ainla, A.; Yuan, L.; Sigursild, H. H.; Tan, E. K. W.; Arkan, N.; Yoshida, Y.; Yip, M. C.; Abd El-Rahman, M. K.; Abrahamsson, C. K.; Whitesides, G. M., Lab. Chip. 2018, 18, 2279-2290.
ne-Pot Preparation of Mechanically Robust, Transparent, Highly Conductive, and Memristive Metal–Organic Ultrathin Film Moreno-Moreno, M.; Troyano, J.; Ares, P.; Nijhuis, C. A.; Yuan, L.; Amo, P.; Delgado, S.; Gómez-Herrero, J.; Zamora, F.; Gómez-Navarro, C. A , ACS. Nano 2018, 12, 10171-10177.
The Driving Force of Electrical Breakdown of Tunnel Junctions Based on Self-Assembled Monolayers Yuan, L.; Jiang, L.; Nijhuis, C. A. , Adv. Funt. Mater. 2018, 1801710.
Transition from Direct to Inverted Charge Transport Marcus Regions in Molecular Yuan, L.#; Wang L.#; Garrigues, A. R.#; Jiang, L.; Annadata, H. V.; del Barco, E.; Nijhuis, C. A. , Nat. Nanotechnol. 2018, 13, 322-329.
Anomalously Rapid Tunneling: Charge Transport across SAMs of Oligoethylene Glycol Bowers, C. M.; Rappoport, D.; Zaba, T.; Yuan, L.; Kang, K.; Liao, K.C.; Gonidec, M.; Rothemund, P.; Cyganik, P.; Aspuru-Guzik, A.; and Whitesides. G. M. , J. Am. Chem. Soc., 2017, 139, 7624-7631.
Magnetic Levitation to Characterize the Kinetics of Free-Radical Polymerization Ge, S.; Semenov, S. N.; Nagarkar, A. A.; Milette, J.; Christodoulea, D. C.; Yuan, L.; and Whitesides.G.M.,, J. Am. Chem. Soc. 2017, 139, 18688-18697.
Tuning Charge Transport across Junctions of Ferrocene-Containing Polymer Brushes on ITO by Controlling the Brush Thickness and the Tether Lengths Gan, L; Yuan, L.; Suchand Sangeeth, C. S.; Jańczewski, D.; Song, J.; Nijhuis, C. A. , Eur. Polym. J. 2017, 97, 282-291.
Molecular Diodes with Rectification Ratios Exceeding 105 Driven by Electrostatic Interactions Chen, X. P.; Roemer, M.; Yuan, L.; Wang T.; Jiang, L.; Wang, L. J.; Nijhuis, C. A. , Nat. Nanotechnol. 2017, 12, 797-803.
Tuning the Rectification Ratio by Changing the Electronic Nature (Open-Shell and Closed-Shell) in Donor-Acceptor SAMs Souto, M.; Yuan, L.; Morales, D. C.; Jiang, L.; Ratera, I.; Rovira, C.; Nijhuis, C. A.; Veciana, J. , J. Am. Chem. Soc. 2017, 139, 4262-4265.
Temperature Dependent Charge Transport across Tunnel Junctions of Single-Molecules and Self-Assembled Monolayers: A Comparative Study Garrigues, A. R.; Yuan, L.; Wang, L.; Singh, S.; del Barco, E.; Nijhuis, C. A., Dalton Trans. 2016, 45, 17153-17159
Comparison of DC and AC Transport in 1.5-7.5 nm Oligophenylene Imine Molecular Wires across Two Junction Platforms: Eutectic In-Ga versus Conducting Probe Atomic Force Microscope Junctions Suchand Sangeeth, C. S.; Demissie, A.; Yuan, L.; Wang, T.; Frisbie, C. D.; Nijhuis, C. A. , J. Am. Chem. Soc. 2016, 138, 7305-7314.
Supramolecular vs. Electronic Structure: The Effect of the Tilt Angle of the Active Group in the Performance of a Molecular Diode Song, P.; Yuan, L; Roemer, M.; Jiang, L.; Nijhuis, C. A. , J. Am. Chem. Soc. 2016, 138, 5769-5772.
A Single-Level Tunnel Model to Account for Electrical Transport through Single Molecule- and Self Assembled Monolayer-based Junctions Garrigues, A. R.; Yuan, L.; Wang, L. J.; Mucciolo, E. R.; del Barco, E.; Nijhuis, C. A. , Sci. Rep. 2016, 6, Article number: 26517.
Chemical Control over the Energy Level Alignment in a Two-Terminal Junction Yuan, L.#; Franco, C.#; Crivillers, N.#; Mas-Torrent, M.; Cao, L.; Rovira, C.; Veciana, J.; Nijhuis, C. A. , Nat. Commun. 2016, Article number: 12066.
Orbital Dependent Ultrafast Charge Transfer Dynamics of Ferrocenyl-Functionalized SAMs on Gold Studied by Core-hole Clock Spectroscopy Cao, L.; Yang, M.; Yuan, L.; Nerngchamnong, N.; Feng, Y. P.; Wee, A. T. S.; Qi, D. C.; Nijhuis, C. A. , J. Phys. Condens. Matter. 2016, 28, 094006.
Arrays of High Quality SAM Based Junctions and their Application in Molecular Diode Based Logic Wan, A.; Suchand Sangeeth, C. S.; Wang, L.; Yuan, L.; Jiang, L.; Nijhuis, C. A. , Nanoscale 2015, 7, 19547-19556.
Non-Ideal Electrochemical Behavior of Ferrocenyl-Alkanethiolate SAMs Maps the Microenvironment of the Redox Unit Nerngchangnong, N.; Thompson, D.; Cao, L.; Yuan, L.; Jiang, L.; Roemer, M.; Nijhuis, C. A. , J. Phys. Chem. C 2015, 2, 1348-1354.
Tuning the Tunneling Rate and Dielectric Response of SAM-Based Junctions via a Single Polarizable Atom Wang, D.; Fracasso, D.; Nurbawono, A.; Annadata, H. V.; Suchand Sangeeth, C. S.; Yuan, L.; Nijhuis, C. A. , Adv. Mater. 2015, 27, 6689-6695.
One-Nanometer Thin Monolayers Remove the Deleterious Effect of Substrate Defects in Molecular Tunnel Junctions Jiang, L.; Suchand Sangeeth, C. S.; Yuan. L.; Thompson, D.; Nijhuis, C. A. , Nano. Lett. 2015, 15, 6643-6649.
A Molecular Diode with a Statistically Robust Rectification Ratio of Three Orders of Magnitude Yuan, L.; Breuer, R.; Jiang, L.; Annadata, H. V.; Schmittel, M.; Nijhuis, C. A. , Nano. Lett. 2015, 15, 5506-5512.
One Carbon Matters: The Origin and Reversal of Odd–Even Effects in Molecular Diodes with Self-Assembled Monolayers of Ferrocenyl-Alkanethiolates Yuan, L.; Thompson, D.; Cao, L.; Nerngchamnong, N.; Nijhuis, C. A. , J. Phys. Chem. C. 2015, 119, 17910-17919.
Controlling the Direction of Rectification in a Molecular Diode Yuan, L.; Nerngchamnong, N.; Cao, L.; Hamoudi, H.; Del Barco, E.; Roemer, M.; Sriramula, R.; Thompson, D.; Nijhuis, C. A. , Nat. Commun. 2015, 6, Article number: 6324.
The Supramolecular Structure of Self-Assembled Monolayers of Ferrocenyl Terminated n-Alkanethiolates on Gold Surfaces Nerngchamnong, N.; Wu, H.; Sotthewes, K.; Yuan, L.; Cao, L.; Roemer, M.; Lu, J.; Loh, K. P.; Troadec, C.; Zandvliet, H.; Nijhuis, C. A. , Langmuir 2014, 30, 13447–13455.
Giant Enhancement in Vertical Conductivity of Stacked CVD Graphene Sheets by Self-Assembled Molecular Layers Liu, Y.#; Yuan, L.#; Yang, M.; Zheng, Y.; Nai, C. T.; Gao, L.; Nerngchamnong, N.; Li, L. J.; Suchand Sangeeth, C. S.; Feng, Y. P.; Nijhuis, C. A. and Loh, K. P. , Nat. Commun. 2014, 5, Article number: 5461.
Bias Induced Transition from an Ohmic to a Non-Ohmic Interface in Supramolecular Tunneling Junctions with Ga2O3/EGaIn Top Electrodes Wimbush, K. S.; Fratila, R. M.; Wang, D. D.; Qi, D. C.; Cao, L.; Yuan, L.; Yakovlev, N.; Loh. K. P.; Reinhoudt, D. N.; Velders, A. H.; Nijhuis, C. A. , Nanoscale 2014, 19, 11246-11258.
On the Remarkable Role of Surface Topography of the Bottom-Electrodes in Blocking Leakage Currents in Molecular Diodes Yuan L.; Jiang, L.; Thompson, D.; Nijhuis, C. A. , J. Am. Chem. Soc. 2014, 136, 6554-6557.
Controlling Leakage Currents: The Role of the Binding Group and Purity of the Precursors for Self-Assembled Monolayers in the Performance of Molecular Diodes Jiang, L.; Yuan, L.; Cao, L.; Nijhuis, C. A. , J. Am. Chem. Soc. 2014, 136, 1982-1991.
Dependency of the Tunneling Decay Coefficient in Molecular Tunneling Junctions on the Topography of the Bottom Electrodes Yuan, L.; Jiang, L.; Zhang, B.; Nijhuis, C. A. , Angew. Chem. Int. Ed. 2014, 53, 3377-3381.
The Role of van der Waals Forces in the Performance of Molecular Diodes Nerngchanmnong, N.#; Yuan, L.#; Qi, D. C.; Jiang, L.; Thompson, D.; Nijhuis, C. A. , Nat. Nanotechnol. 2013, 8, 113-118.