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Yang Bai

Researcher at Beijing Institute of Technology

Publications -  360
Citations -  35934

Yang Bai is an academic researcher from Beijing Institute of Technology. The author has contributed to research in topics: Perovskite (structure) & Medicine. The author has an hindex of 71, co-authored 229 publications receiving 21196 citations. Previous affiliations of Yang Bai include Aston University & Central South University.

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Reproducible, interactive, scalable and extensible microbiome data science using QIIME 2

Evan Bolyen, +123 more
- 01 Aug 2019 - 
TL;DR: QIIME 2 development was primarily funded by NSF Awards 1565100 to J.G.C. and R.K.P. and partial support was also provided by the following: grants NIH U54CA143925 and U54MD012388.
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Defect passivation in hybrid perovskite solar cells using quaternary ammonium halide anions and cations

TL;DR: Zheng et al. as discussed by the authors showed that quaternary ammonium halides can effectively passivate ionic defects in several different types of hybrid perovskite with their negative-and positive-charged components.
Posted ContentDOI

QIIME 2: Reproducible, interactive, scalable, and extensible microbiome data science

Evan Bolyen, +119 more
- 24 Oct 2018 - 
TL;DR: QIIME 2 provides new features that will drive the next generation of microbiome research, including interactive spatial and temporal analysis and visualization tools, support for metabolomics and shotgun metagenomics analysis, and automated data provenance tracking to ensure reproducible, transparent microbiome data science.
Journal ArticleDOI

Functional overlap of the Arabidopsis leaf and root microbiota

TL;DR: It is shown that the isolates form assemblies resembling natural microbiota on their cognate host organs, but are also capable of ectopic leaf or root colonization, which raises the possibility of reciprocal relocation between root and leaf microbiota members.
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Cation and anion immobilization through chemical bonding enhancement with fluorides for stable halide perovskite solar cells

TL;DR: Li et al. as discussed by the authors employed fluoride to simultaneously passivate both anion and cation vacancies, by taking advantage of the extremely high electronegativity of fluoride, and obtained a power conversion efficiency of 21.46% (and a certified 21.3%-efficient cell) in a device based on the caesium, methylammonium (MA), and formamidinium (FA) triple-cation perovskite (Cs0.05FA0.41)Pb(I0.98Br0.02)3 treated with sodium