首页> 外文期刊>ACS Omega >Architecting a Double Charge-Transfer Dynamics In2S3/BiVO4 n–n Isotype Heterojunction for Superior Photocatalytic Oxytetracycline Hydrochloride Degradation and Water Oxidation Reaction: Unveiling the Association of Physicochemical, Electrochemical, and Photocatalytic Properties
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Architecting a Double Charge-Transfer Dynamics In2S3/BiVO4 n–n Isotype Heterojunction for Superior Photocatalytic Oxytetracycline Hydrochloride Degradation and Water Oxidation Reaction: Unveiling the Association of Physicochemical, Electrochemical, and Photocatalytic Properties

机译:架构双电荷转移动力学IN2S3 / BIVO4 N-N同种型异质结,用于卓越的光催化催产素盐酸盐降解和水氧化反应:揭示物理化学,电化学和光催化性能的关联

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To surmount incompatibility provoked efficiency suppression of an anisotype heterojunction and to pursue an improved intrinsic photocatalytic activity by manipulating oriented transfer of photoinduced charge carriers, an In_(2)S_(3)/BiVO_(4) (1:1) n–n isotype heterojunction was fabricated successfully through a simple two-step calcination method, followed by a wet-chemical deposition method. The formation of an n–n isotype heterojunction was confirmed by X-ray diffraction, Fourier transform infrared spectroscopy, X-ray photoelectron spectroscopy, and UV–visible diffuse reflectance spectroscopy. The photocatalytic efficiency of the In_(2)S_(3)/BiVO_(4) catalyst was examined over degradation of oxytetracycline hydrochloride (O-TCH) and oxygen (O_(2)) evolution reaction. Consequently, an n–n In_(2)S_(3)/BiVO_(4) isotype heterojunction exhibits a superior O-TCH degradation efficiency (94.6%, 120 min) and O_(2) evolution (695.76 μmol, 120 min) of multiple folds as compared to the pure BiVO_(4) and In_(2)S_(3) solely. This is attributed to the proper band alignment and intimate interfacial interaction promoted charge carrier separation over the n–n isotype heterojunction. The intimate interfacial contact was confirmed by transmission electron microscopy (TEM), high-resolution TEM, and field emission scanning electron microscopy analysis. The proper band alignment was confirmed by Mott–Schottky analysis. The photoelectrochemical linear sweep voltammetric study shows a superior photocurrent density (269 μA/cm~(2)) for In_(2)S_(3)/BiVO_(4) as compared to those for pristine BiVO_(4) and In_(2)S_(3), which is in good agreement with the photocatalytic results. Furthermore, the superior charge antirecombination efficiency of the n–n isotype heterojunction was established by photoluminescence, electrochemical impedance spectroscopy, Bode analysis, transient photocurrent, and carrier density analysis. The improved photostability of the heterojunction was confirmed by chronoamperometry analysis. An orderly corelationship among physicochemical, electrochemical, and photocatalytic properties was established, and a possible mechanistic pathway was presented to better understand the outcome of the n–n isotype heterojunction. This study presents an effective way to develop new n–n isotype heterojunction-based efficient photocatalysts and could enrich wide applications in other areas.
机译:通过操纵光诱导电荷载体的定向转移,追加效率抑制各种类型异质结的效率抑制,并通过操纵光致电荷载体的定向转移,in_(2)S_(3)/ bivo_(4)(1:1)n-n同种型来追求改进的内在光催化活性通过简单的两步煅烧方法成功制造异质结,然后是湿化学沉积方法。通过X射线衍射,傅里叶变换红外光谱,X射线光电子能谱和UV可见漫射反射光谱来确认N-N同种型异质结的形成。检查In_(2)S_(3)/ BIVO_(4)催化剂的光催化效率在盐酸盐(O-TCH)和氧气(O_(2))进化反应的羟基氯丁(O-TCH)和氧气中的降解。因此,N-N IN_(2)S_(3)/ BIVO_(4)异型异质结具有出色的O-TCH降解效率(94.6%,120分钟)和O_(2)进化(695.76μmol,120分钟)与纯BIVO_(4)和IN_(2)S_(3)相比,多重折叠。这归因于适当的带对准,并且促进互联的界面相互作用促进了N-N同种型异质结的电荷载流子分离。通过透射电子显微镜(TEM),高分辨率TEM和场发射扫描电子显微镜分析来确认亲密的界面接触。通过Mott-Schottky分析确认了适当的带对准。光电化学线性扫描伏安法研究表明,与原始BIVO_(4)和IN_(2)相比,用于IN_(2)S_(3)/ BIVO_(4)的优异的光电流密度(269μA/ cm〜(2)) S_(3),与光催化结果一致。此外,通过光致发光,电化学阻抗谱,稳定性分析,瞬态光电流和载流子密度分析建立了N-N同种型异质结的优异电荷反搅拌效率。通过计时分析证实了异质结的改善的光稳定性。建立了物理化学,电化学和光催化性质的有序强调,并提出了可能的机械途径以更好地理解N-N同种型异质结的结果。本研究提出了一种开发新的N-N同种型异质结的高效光催化剂的有效方法,可以丰富广泛的应用。

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