Versatile Interplay of Chalcogenide and Dichalcogenide Anions in the Thiovanadate Ba7S(VS3O)2(S2)3 and Its Selenide Derivatives: Elaboration and DFT Meta-GGA Study

IF 3.3 Q2 CHEMISTRY, MULTIDISCIPLINARY
Batoul Almoussawi, Hiroshi Kageyama, Pascal Roussel and Houria Kabbour*, 
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引用次数: 1

Abstract

Oxychalcogenides are emerging as promising alternative candidates for a variety of applications including for energy. Only few phases among them show the presence of Q–Q bonds (Q = chalcogenide anion) while they drastically alter the electronic structure and allow further structural flexibility. Four original oxy(poly)chalcogenide compounds in the system Ba–V–Q–O (Q = S, Se) were synthesized, characterized, and studied using density functional theory (DFT). The new structure type found for Ba7V2O2S13, which can be written as Ba7S(VS3O)2(S2)3, was substituted to yield three selenide derivatives Ba7V2O2S9.304Se3.696, Ba7V2O2S7.15Se5.85, and Ba7V2O2S6.85Se6.15. They represent original multiple-anion lattices and first members in the system Ba–V–Se–S–O. They exhibit in the first layer heteroleptic tetrahedra V5+S3O and isolated Q2– anions and in the second layer dichalcogenide pairs (Q2)2– with Q = S or Se. Selenide derivatives were attempted by targeting the selective substitution of isolated Q2– or (Q2)2– (in distinct layers) or both by selenide, but it systematically led to concomitant and partial substitution of both sites. A DFT meta-GGA study showed that selective substitution yields local constraints due to rigid VO3S and pairs. Experimentally, incorporation of selenide in both layers avoids geometrical mismatch and constraints. In such systems, we show that the interplay between the O/S anionic ratio around V5+, together with the presence/nature of the dichalcogenides (Q2)2– and isolated Q2–, impacts in unique manners the band gap and provides a rich background to tune the band gap and the symmetry.

Abstract Image

硫系阴离子和二硫系阴离子在硫代钒酸盐Ba7S(vs30)2(S2)3及其硒系衍生物中的广泛相互作用:阐述和DFT - Meta-GGA研究
氧硫族化合物正在成为包括能源在内的各种应用的有前景的替代候选者。其中只有少数相显示出Q–Q键(Q=硫族化物阴离子)的存在,同时它们极大地改变了电子结构,并允许进一步的结构灵活性。利用密度泛函理论(DFT)合成、表征和研究了Ba–V–Q–O(Q=S,Se)体系中四种原始的氧(聚)硫族化合物。Ba7V2O2S13发现的新结构类型,可写成Ba7S(VS3O)2(S2)3,被取代以产生三种硒化物衍生物Ba7V2O2S9.304Se.696、Ba7V2O2 S7.15Se5.85和Ba7V2O S6.85Se6.15。它们代表了Ba–V–Se–S–O系统中的原始多个阴离子晶格和第一成员。它们在第一层的异质四面体V5+S3O和分离的Q2–阴离子中表现出,在第二层的二硫属化合物对(Q2)2–中表现出Q=S或Se。硒化物衍生物是通过硒化物选择性取代分离的Q2-或(Q2(2)2–(在不同的层中)或两者来尝试的,但它系统地导致了两个位点的伴随和部分取代。DFT元GGA研究表明,由于刚性VO3S和对,选择性取代产生局部约束。在实验上,硒化物在两层中的结合避免了几何失配和约束。在这样的系统中,我们发现V5+周围的O/S阴离子比之间的相互作用,以及二硫族化合物(Q2)2-和孤立的Q2-的存在/性质,以独特的方式影响带隙,并为调节带隙和对称性提供了丰富的背景。
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来源期刊
ACS Organic & Inorganic Au
ACS Organic & Inorganic Au 有机化学、无机化学-
CiteScore
4.10
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0.00%
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0
期刊介绍: ACS Organic & Inorganic Au is an open access journal that publishes original experimental and theoretical/computational studies on organic organometallic inorganic crystal growth and engineering and organic process chemistry. Short letters comprehensive articles reviews and perspectives are welcome on topics that include:Organic chemistry Organometallic chemistry Inorganic Chemistry and Organic Process Chemistry.
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