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首页> 外文期刊>Catalysis science & technology >2D MXene-derived Nb2O5/C/Nb2C/g-C(3)N(4)heterojunctions for efficient nitrogen photofixation
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2D MXene-derived Nb2O5/C/Nb2C/g-C(3)N(4)heterojunctions for efficient nitrogen photofixation

机译:2 d MXene-derivedNb2O5 / C / Nb2C / g C N(3)(4)垂直有效氮photofixation

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摘要

Due to the rather high 940.95 kJ mol(-1)thermodynamic cleavage energy of the N-N triple bond, developing a robust catalytic process for N(2)reduction under mild conditions is a continuing scientific challenge. Here, 2D MXene-derived niobium pentoxide/carbon/niobium carbide/graphite-like carbon nitride (Nb2O5/C/Nb2C/g-C3N4) heterojunctions were explored as photocatalysts for N(2)reduction in water. Nb2O5/C/Nb2C/g-C(3)N(4)heterojunctions were prepared by uniformly growing Nb(2)O(5)on Nb2C and then forming g-C(3)N(4)nanosheetsin situon Nb2O5/C/Nb2C. With an optimized Nb2O5/C/Nb2C : g-C(3)N(4)ratio of 1 : 1, Nb2O5/C/Nb2C/g-C(3)N(4)showed a high nitrogen reduction rate (0.365 mmol h(-1)g(cat)(-1)), which was 9.1 times as high as that of the MXene derived Nb2O5/g-C(3)N(4)composite. It is worth mentioning that the enhanced performance of Nb2O5/C/Nb2C/g-C(3)N(4)should be attributed to the enhancement in photogenerated electron and hole separation efficiency caused by the short-range directional charge transmission over the close contact between Nb(2)O(5)and conductive Nb2C as well as the Schottky junction formed at the Nb2O5/Nb2C interface. By further changing the pH of the catalytic system, the concentration of reactive electrons was adjusted and the energy barrier of proton reduction was improved. With the optimized pH of 9 adjusted with NaOH solution, the nitrogen reduction efficiency could be further promoted 2.5 times (0.927 mmol h(-1)g(cat)(-1)).
机译:由于很高940.95 kJ摩尔(1)热力学乳沟n n的能量三键,开发一个健壮的催化过程在温和条件下N(2)减少是一个持续的科学挑战。MXene-derived五氧化二铌/碳/铌硬质合金/ graphite-like碳氮化(Nb2O5 / C / Nb2C / g-C3N4)垂直探索为N(2)减少催化剂水。是由均匀增长Nb (2) O (5)Nb2C然后形成g c N (3) (4) nanosheetsinsituon Nb2O5 / C / Nb2C。Nb2O5 / C / Nb2C: g C N(3)(4)比1:1,Nb2O5 / C / Nb2C / g C N(3)(4)显示高氮还原速度(0.365更易与h (1) g(猫)(1)),这是9.1倍的MXene吗派生Nb2O5 / g c N(3)(4)复合材料。提到的增强性能Nb2O5 / C / Nb2C / g C N(3)(4)应该归因于photogenerated电子和增强洞造成的分离效率短程定向传输注(2)之间的密切接触O(5)和导电Nb2C以及形成的肖特基结Nb2O5 / Nb2C接口。催化体系的pH值,的浓度活性电子调整和能量屏障提高质子的还原。与氢氧化钠9的pH值优化调整解决方案,减少氮效率进一步提升2.5倍(0.927更易h (- 1) g (cat)(- 1))。

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