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2015

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48. Synthesis of colloidal InSb nanocrystals via in situ activation of InCl3 Dalton Transactions

Sudarsan Tamang, Kyungnam Kim, Hyekyoung Choi, Youngsik Kimac and Sohee Jeong*

Dalton Trans., 2015, 44, pp 16923- 16928.

47. A Resonance-Shifting Hybrid n-Type Layer for Boosting Near-Infrared Response in Highly Efficient Colloidal Quantum Dots Solar Cells Advanced Materials 5 (2015) 4002-4007.

Se-Woong Baek , Jung Hoon Song , Woong Choi , Hyunjoon Song , Sohee Jeong* , and Jung-Yong Lee*

Advanced Materials, 2015, 5, pp 4002-4007.

46. High performance of PbSe/PbS core/shell quantum dot heterojunction solar cells: short circuit current enhancement without the loss of open circuit voltage by shell thickness control

Hyekyoung Choi, Jung Hoon Song, Jihoon Jang, Xuan Dung Mai, Sungwoo Kim and Sohee Jeong*

Nanoscale, 2015, 7, pp 17473-17481

45. Origin of photoluminescence from colloidal gallium phosphide nanocrystals synthesized via a hot-injection method

Sungwoo Kim, Kangha Lee, Sejin Kim, O.-Pil Kwon, Jin Hyuk Heo, Sang Hyuk Im,Sohee Jeong, Doh C. Lee* and Sang-Wook Kim*

RSC Adv., 2015, 5, pp 2466-2469

44. Fabrication of periodic nanoparticle clusters using a soft lithographic template

Dae Seok Kim, Apiradee Honglawan, Kyungnam Kim, Mun Ho Kim, Sohee Jeong, Shu Yang, and Dong Ki Yoon*

J. Mater. Chem. C, 2015, 3, pp 4598-4602

43. Photovoltaic light absorber with spatial energy band gradient using PbS quantum dot layers

Jihoon Jang, JungHoonSong, HyekyoungChoi, Seung Jae Baik, Sohee Jeong*

Solar Energy Materials & SolarCells, 2015, 141, pp 270-274

42. Long-term stability of CdSe/CdZnS quantum dot encapsulated in a multi-lamellar microcapsule

Sang-Yul Park, Hyo-Sun Kim, Jeseung Yoo, Suyong Kwon, Tae Joo Shin, Kyungnam Kim, Sohee Jeong*, and Young-Soo Seo*

Nanotechnology, 2015, 26, 275602

41. Air-Stable and Efficient PbSe Quantum-Dot Solar Cells Based upon ZnSe to PbSe Cation-Exchanged Quantum Dots

Sungwoo Kim, Ashley R. Marshall, Daniel M. Kroupa, Elisa M. Miller, Joseph M. Luther, Sohee Jeong*, and Matthew C. Beard*

ACS Nano, 2015, 9 (8), pp 8157-8164

40. Direct Low-Temperature Growth of Single-Crystalline Anatase TiO2 Nanorod Arrays on Transparent Conducting Oxide Substrates for Use in PbS Quantum-Dot Solar Cells

Hyun Suk Chung, Gill Sang Han, So Yeon Park, Hee-Won Shin, Tae Kyu Ahn, Sohee Jeong, In Sun Cho, and Hyun Suk Jung

ACS Appl. Mater. Interfaces, 2015, 7 (19), pp 10324-10330

39. Charge Transport Characterization of PbS Quantum Dot Solids for High efficiency Solar Cells

Young Jin Jeong, Jihoon Jang, Jung Hoon Song, Hyekyoung Choi, Sohee Jeong*, and Seung Jae Baik*

J. Opt. Soc. Korea, 2015, 19, pp 272-276

38.All-solution-processed PbS quantum dot solar modules

Jihoon Jang, Hyung Cheoul Shim, Yeonkyeong Ju, Jung Hoon Song, Hyejin An, Jong-Su Yu, Sun-Woo Kwak, Taik-Min Lee, Inyoung Kim*, and Sohee Jeong*

Nanoscale, 2015, 7, pp 8829-8834

37. Analysis and characterization of iron pyrite nanocrystals and nanocrystalline thin films derived from bromide anion synthesis

Khagendra P. Bhandari, Paul J. Roland, Tyler Kinner, Yifang Cao, Hyekyoung Choi, Sohee Jeong*, and Randy J. Ellingson*

J. Mater. Chem. A, 2015, 3, pp 6853-6861

36. Size-Dependence of Excitation Energy-Related Surface Trapping Dynamics in PbS Quantum Dots

Heejae Chung, Hyekyoung Choi, Dongho Kim, Sohee Jeong*, and Jiwon Kim*

J. Phys. Chem. C, 2015, 119 (13), pp 7517-7524

35. Atomic layer deposition effect on the electrical properties of Al2O3-passivated PbS quantum dot field-effect transistors

Hye-Mi So, Hyekyoung Choi, Hyung Cheoul Shim, Seung-Mo Lee, Sohee Jeong*, and Won Seok Chang*

Appl. Phys. Lett., 2015, 106, 093507