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[Evolutionary Nanomaterials & Nanodevices] Wonil Jung, Sujeong Lee, Dongwon Yoo, Sohee Jeong, Pere Miro Agnieszka Kuc, Thomas Heine, and Jinwoo Cheon*
Colloidal Synthesis of Single-Layer MSe2 (M = Mo, W) Nanohseets via Anisotropic Solution-Phase Growth Approach
J. Am. Chem. Soc., 137 (23), 7266-7269
 (Jun 8, 2015)
  DOI : https://doi.org/10.1021/jacs.5b02772

2D-nanosheets, transition metal chalcogenide, capping ligand, synthetic strategy, modular control

[Evolutionary Nanomaterials & Nanodevices] Daniel Rossi, Luis E. Camacho-Forero, Guadalupe Ramos-Sanchez, Jae Hyo Han, Jinwoo Cheon, Perla Balbuena, and Dong Hee Son*
Anisotropic Electron–Phonon Coupling in Colloidal Layered TiS2 Nanodiscs Observed via Coherent Acoustic Phonons
J. Phys. Chem. C., 119 (13), 7436-7442
 (Mar 13, 2015)
  DOI : https://doi.org/10.1021/jp512182j

Transition metal dichalcogenide, anisotropiy, coupling, optical excitation, colloidal, electron-phonon

[Precision Nanomedicine] Tae-Hyun Shin, Youngseon Choi, Soojin Kim, and Jinwoo Cheon*
Recent Advances in Magnetic Nanoparticle-Based Multi-Modal Imaging
Chem. Soc. Rev., 44 (14), 4501-4516
 (Feb 5, 2015)
  DOI : https://doi.org/10.1039/C4CS00345D

Magnetic resonance imaging, contrast agents, multi-modal, optical, radioisotope, magnetic particle imaging, magneto-motive ultrasound imaging, magneto-photoacoustic imaging

[Evolutionary Nanomaterials & Nanodevices] Sohee Jeong†, Dongwon Yoo†, Minji Ahn, Pere Miro, Thomas Heine, and Jinwoo Cheon* († equally contributed)
Tandem Intercalation Strategy for Single-Layer Nanosheets as an Effective Alternative to Conventional Exfoliation Processes
Nat. Commun., 6, 5763-5769
 (Jan 9, 2015)
  DOI : https://doi.org/10.1038/ncomms6763

transition metal chalcogenide, tandem molecular intercalation, exfoliation, single-layer

[Nanobio Interface] Yiseul Ryu†, Zongwen Jin†, Joong-Jae Lee, Seung-Hyun Noh, Tae-Hyun Shin, Seong-Min Jo, Joonsung Choi, Hyun Wook Park, Jinwoo Cheon, and Hak-Sung Kim* († equally contributed)
Size-Controlled Construction of Magnetic Nanoparticle Clusters Using DNA-Binding Zinc Finger Protein
Angew. Chem. Int. Ed., 54 (3), 923-926
 (Nov 25, 2014)
  DOI : https://doi.org/10.1002/anie.201408593

Nanoparticle cluster, DNA-binding zinc finger, MRI, folate

[Evolutionary Nanomaterials & Nanodevices] Pere Miro*, Jae Hyo Han, Jinwoo Cheon, and Thomas Heine*
Hexagonal Transition-Metal Chalcogenide Nanoflakes with Pronounced Lateral Quantum Confinement
Angew. Chem. Int. Ed., 53 (46), 12624-12628
 (Nov 10, 2014)
  DOI : https://doi.org/10.1002/anie.201404704

Transition metal chalcogenide, quantum confinement, hexagonal shape, Lewis base, flake edge

[Evolutionary Nanomaterials & Nanodevices] Dongwon Yoo†, Minkyoung Kim†, Sohee Jeong, Jeonghee Han, and Jinwoo Cheon* († equally contributed)
Chemical Synthetic Strategy for Single-Layer Transition-Metal Chalcogenides
J. Am. Chem. Soc., 136 (42), 14670-14673
 (Oct 14, 2014)
  DOI : https://doi.org/10.1021/ja5079943

2D single layer transition metal chalcogenide, solution-phase synthesis, diluted chalcogen continuous influx (DCCI)

[Nanobio Interface] Jae-Hyun Lee, Ji-wook Kim, Michael Levy, Albert Kao, Seung-hyun Noh, Dolores Bozovic*, and Jinwoo Cheon*
Magnetic Nanoparticles for Ultrafast Mechanical Control of Inner Ear Hair Cells
ACS Nano, 8 (7), 6590-6598
 (Jul 8, 2014)
  DOI : https://doi.org/10.1021/nn5020616

Magnetic nanoparticle, stimulation, hair cell, mechanosensitive ion channel

[Evolutionary Nanomaterials & Nanodevices] Daniel Rossi, Jae Hyo Han, Dongwon Yoo, Yitong Dong, Yerok Park, Jinwoo Cheon*, and Dong hee Son*
Photoinduced Separation of Strongly Interacting 2-D Layered TiS2 Nanodiscs in Solution
J. Phys. Chem. C., 118 (23), 12568-12573
 (May 16, 2014)
  DOI : https://doi.org/10.1021/jp5038624

2-D layered, Transition metal dichalcogenide, TiS2, photoexcitation, pulsed laser

[Nanobio Interface] Seong-Min Jo, Seung-hyun Noh, Zongwen Jin, Yongjun Lim, Jinwoo Cheon, and Hak-Sung Kim*
Simple and Efficient Capture of EGFR-Expressing Tumor Cells Using Magnetic Nanoparticles
Sensors and Actuators B., 201 (1), 144-152
 (May 10, 2014)
  DOI : https://doi.org/10.1016/j.snb.2014.05.016

Magnetic nanoparticle, EGFR, cancer cell, capturing

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