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Dive into the research topics where Khabiboulakh Katsiev is active.

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Featured researches published by Khabiboulakh Katsiev.


Science | 2015

Low trap-state density and long carrier diffusion in organolead trihalide perovskite single crystals

Dong Shi; Valerio Adinolfi; Riccardo Comin; Mingjian Yuan; Erkki Alarousu; Andrei Buin; Yin Chen; Sjoerd Hoogland; Alexander Rothenberger; Khabiboulakh Katsiev; Yaroslav Losovyj; Xin Zhang; Peter A. Dowben; Omar F. Mohammed; Edward H. Sargent; Osman M. Bakr

Large-crystal perovskite films The performance of organic-inorganic hybrid perovskite planar solar cells has steadily improved. One outstanding issue is that grain boundaries and defects in polycrystalline films degrade their output. Now, two studies report the growth of millimeter-scale single crystals. Nie et al. grew continuous, pinhole-free, thin iodochloride films with a hot-casting technique and report device efficiencies of 18%. Shi et al. used antisolvent vapor-assisted crystallization to grow millimeter-scale bromide and iodide cubic crystals with charge-carrier diffusion lengths exceeding 10 mm. Science, this issue p. 522, p. 519 Solution processing techniques enable the growth of high-quality, large-area perovskite crystals for solar cells. The fundamental properties and ultimate performance limits of organolead trihalide MAPbX3 (MA = CH3NH3+; X = Br– or I–) perovskites remain obscured by extensive disorder in polycrystalline MAPbX3 films. We report an antisolvent vapor-assisted crystallization approach that enables us to create sizable crack-free MAPbX3 single crystals with volumes exceeding 100 cubic millimeters. These large single crystals enabled a detailed characterization of their optical and charge transport characteristics. We observed exceptionally low trap-state densities on the order of 109 to 1010 per cubic centimeter in MAPbX3 single crystals (comparable to the best photovoltaic-quality silicon) and charge carrier diffusion lengths exceeding 10 micrometers. These results were validated with density functional theory calculations.


Journal of Physical Chemistry Letters | 2016

Heterovalent Dopant Incorporation for Bandgap and Type Engineering of Perovskite Crystals

Ahmed L. Abdelhady; Makhsud I. Saidaminov; Banavoth Murali; Valerio Adinolfi; Oleksandr Voznyy; Khabiboulakh Katsiev; Erkki Alarousu; Riccardo Comin; Ibrahim Dursun; Lutfan Sinatra; Edward H. Sargent; Omar F. Mohammed; Osman M. Bakr

Controllable doping of semiconductors is a fundamental technological requirement for electronic and optoelectronic devices. As intrinsic semiconductors, hybrid perovskites have so far been a phenomenal success in photovoltaics. The inability to dope these materials heterovalently (or aliovalently) has greatly limited their wider utilizations in electronics. Here we show an efficient in situ chemical route that achieves the controlled incorporation of trivalent cations (Bi(3+), Au(3+), or In(3+)) by exploiting the retrograde solubility behavior of perovskites. We term the new method dopant incorporation in the retrograde regime. We achieve Bi(3+) incorporation that leads to bandgap tuning (∼300 meV), 10(4) fold enhancement in electrical conductivity, and a change in the sign of majority charge carriers from positive to negative. This work demonstrates the successful incorporation of dopants into perovskite crystals while preserving the host lattice structure, opening new avenues to tailor the electronic and optoelectronic properties of this rapidly emerging class of solution-processed semiconductors.


Advanced Materials | 2014

The Complete In-Gap Electronic Structure of Colloidal Quantum Dot Solids and Its Correlation with Electronic Transport and Photovoltaic Performance

Khabiboulakh Katsiev; Alexander H. Ip; Armin Fischer; Iori Tanabe; Xin Zhang; Ahmad R. Kirmani; Oleksandr Voznyy; Lisa R. Rollny; Kang Wei Chou; Susanna M. Thon; Graham H. Carey; Xiaoyu Cui; Aram Amassian; Peter A. Dowben; Edward H. Sargent; Osman M. Bakr

The direct observation of the complete electronic band structure of a family of PbS CQD solids via photoelectron spectroscopy is reported. We investigate how materials processing strategies, such as the latest passivation methods that produce record-performance photovoltaics, achieve their performance advances. Halide passivated films show a drastic reduction in states in the midgap, contributing to a marked improvement in the device performance.


Journal of Materials Chemistry | 2013

A scalable synthesis of highly stable and water dispersible Ag44(SR)30 nanoclusters

Lina G. AbdulHalim; Sumaira Ashraf; Khabiboulakh Katsiev; Ahmad R. Kirmani; Nuwan Kothalawala; Dalaver H. Anjum; Sikandar Abbas; Aram Amassian; Francesco Stellacci; Amala Dass; Irshad Hussain; Osman M. Bakr

We report the synthesis of atomically monodisperse thiol-protected silver nanoclusters [Ag44(SR)30 ]m, (SR = 5-mercapto-2-nitrobenzoic acid) in which the product nanocluster is highly stable in contrast to previous preparation methods. The method is one-pot, scalable, and produces nanoclusters that are stable in aqueous solution for at least 9 months at room temperature under ambient conditions, with very little degradation to their unique UV-Vis optical absorption spectrum. The composition, size, and monodispersity were determined by electrospray ionization mass spectrometry and analytical ultracentrifugation. The produced nanoclusters are likely to be in a superatom charge-state of m = 4−, due to the fact that their optical absorption spectrum shares most of the unique features of the intense and broadly absorbing nanoparticles identified as [Ag44(SR)30]4− by Harkness et al. (Nanoscale, 2012, 4, 4269). A protocol to transfer the nanoclusters to organic solvents is also described. Using the disperse nanoclusters in organic media, we fabricated solid-state films of [Ag44(SR)30]m that retained all the distinct features of the optical absorption spectrum of the nanoclusters in solution. The films were studied by X-ray diffraction and photoelectron spectroscopy in order to investigate their crystallinity, atomic composition and valence band structure. The stability, scalability, and the film fabrication method demonstrated in this work pave the way towards the crystallization of [Ag44(SR)30]m and its full structural determination by single crystal X-ray diffraction. Moreover, due to their unique and attractive optical properties with multiple optical transitions, we anticipate these clusters to find practical applications in light-harvesting, such as photovoltaics and photocatalysis, which have been hindered so far by the instability of previous generations of the cluster.


RSC Advances | 2013

Rapid continuous flow synthesis of high-quality silver nanocubes and nanospheres

Hakim Mehenni; Lutfan Sinatra; Remi Mahfouz; Khabiboulakh Katsiev; Osman M. Bakr

We report a biphasic-liquid segmented continuous flow method for the synthesis of high-quality plasmonic single crystal silver nanocubes and nanospheres. The nanocubes were synthesized with controllable edge lengths from 20 to 48 nm. Single crystal nanospheres with a mean size of 29 nm were obtained by in-line continuous-flow etching of as-produced 39 nm nanocubes with an aqueous solution of FeNO3. In comparison to batch synthesis, the demonstrated processes represent highly scalable reactions, in terms of both production rate and endurance. The reactions were conducted in a commercially available flow-reactor system that is easily adaptable to industrial-scale production, facilitating widespread utilization of the procedure and the resulting nanoparticles.


Chemical Communications | 2015

Porphyrinic supramolecular daisy chains incorporating pillar[5]arene-viologen host-guest interactions

Maher Fathalla; Nathan L. Strutt; Srinivasan Sampath; Khabiboulakh Katsiev; Karel J. Hartlieb; Osman M. Bakr; J. Fraser Stoddart


Carbon | 2015

On the relation between chemical composition and optical properties of detonation nanodiamonds

Ahmad R. Kirmani; Wei Peng; R. Mahfouz; Aram Amassian; Y. Losovyj; Hicham Idriss; Khabiboulakh Katsiev


Physical Chemistry Chemical Physics | 2016

Tailoring ruthenium exposure to enhance the performance of fcc platinum@ruthenium core–shell electrocatalysts in the oxygen evolution reaction

Noktan M. AlYami; Alec P. LaGrow; Khurram Saleem Joya; Jinyeon Hwang; Khabiboulakh Katsiev; Dalaver H. Anjum; Yaroslav Losovyj; Lutfan Sinatra; Jin Young Kim; Osman M. Bakr


Journal of Physical Chemistry C | 2014

Synthesis of Copper Hydroxide Branched Nanocages and Their Transformation to Copper Oxide

Alec P. LaGrow; Lutfan Sinatra; Ahmed Elshewy; Kuo-Wei Huang; Khabiboulakh Katsiev; Ahmad R. Kirmani; Aram Amassian; Dalaver H. Anjum; Osman M. Bakr


Chemical Communications | 2017

Trapping shape-controlled nanoparticle nucleation and growth stages via continuous-flow chemistry

Alec P. LaGrow; Tabot M. D. Besong; Noktan M. AlYami; Khabiboulakh Katsiev; Dalaver H. Anjum; Ahmed Abdelkader; Pedro M. F. J. Costa; Victor M. Burlakov; Alain Goriely; Osman M. Bakr

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Osman M. Bakr

King Abdullah University of Science and Technology

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Ahmad R. Kirmani

King Abdullah University of Science and Technology

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Aram Amassian

King Abdullah University of Science and Technology

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Lutfan Sinatra

King Abdullah University of Science and Technology

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Peter A. Dowben

University of Nebraska–Lincoln

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Dalaver H. Anjum

King Abdullah University of Science and Technology

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Omar F. Mohammed

King Abdullah University of Science and Technology

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Xin Zhang

University of Nebraska–Lincoln

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Yaroslav Losovyj

Indiana University Bloomington

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