mantis diffuse reflectance accessory (Revvity)
91
Structured Review
Revvity
mantis diffuse reflectance accessory
Mantis Diffuse Reflectance Accessory, supplied by Revvity, used in various techniques. Bioz Stars score: 91/100, based on 42 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/diffusion/Praying+Mantis+accessory%2C+(+Harrick+)+for+Diffuse+Reflectance+measurements/pmc05082472-46-17-12
Average 91 stars, based on 42 article reviews
Mantis Diffuse Reflectance Accessory, supplied by Revvity, used in various techniques. Bioz Stars score: 91/100, based on 42 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/diffusion/Praying+Mantis+accessory%2C+(+Harrick+)+for+Diffuse+Reflectance+measurements/pmc05082472-46-17-12
Average 91 stars, based on 42 article reviews
mantis diffuse reflectance accessory - by Bioz Stars,
2026-09
91/100 stars
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Spectrophotometry:Article Title: Structural Variations of 2D and 3D Lanthanide Oxalate Frameworks Hydrothermally Synthesized in the Presence of Hydrazinium Ions Article Snippet: Depending on the nature of the 4f element, six different lanthanide oxalate families were hydrothermally synthesized in the presence of hydrazinium ions.. Four of them correspond to the general formula N2H5[Ln(C2O4)2]·nH2O but have different structural formulas according to the number of coordinated water molecules or hydrazinium ions and the structural arrangement, N2H5[La(C2O4)2] (1); N2H5[{Ln2(N2H5)}(C2O4)4]·4H2O, Ln = Ce, Pr, Nd, and Sm (2); N2H5[{Ln(H2O)}(C2O4)2], Ln = Sm, Eu, Gd, Tb, Dy, and Ho (3); N2H5[Ln(C2O4)2]·nH2O, Ln = Yb, n = 3, and Lu, n = 2 (5).. The two others do not contain hydrazinium ions. Article Title: Nanocrystalline Ga–Zn Oxynitride Materials: Minimized Defect Density for Improved Photocatalytic Activity? Article Snippet: .. A Perkin Elmer Lambda 650 spectrophotometer and Article Title: H2-SCR of NOx on low-SSA CeO2-supported Pd: The effect of Pd particle size Article Snippet: The H2-SCR of NO was investigated in the 130− 220 C range over low-SSA CeO2-supported Pd of varying particle size, dPd (ca.. 13− 45 nm).. Relationships were derived between dPd and the specific integral rate (per gram of Pd or length of metal-support interface), NO conversion, N2-selectivity, TOFNO and the concentration of active NOx-s. Article Title: Enhanced selectivity of benzene-toluene-ethyl benzene and xylene (BTEX) in direct conversion of n-butanol to aromatics over Zn modified HZSM5 catalysts Article Snippet: The sustainable aromatics production from renewable source is indispensable to circumvallate the dependence on fossil fuel for commodity chemicals.. Direct conversion of n-butanol to aromatics using xZn-HZSM5 (0–10 wt %, SiO2/Al2O3 = 23, 55 and 280) catalysts was proposed in the present investigation.. Characterization studies revealed the formation of different Zn species depending on the Zn loading. Spectroscopy:Article Title: Rational Design of Single-Atom-Doped Ga2O3 Catalysts for Propane Dehydrogenation: Breaking through Volcano Plot by Lewis Acid–Base Interactions Article Snippet: Volcano curves have proven to be particularly useful in new catalyst design in the field of heterogeneous catalysis.. On the other hand, the further enhancement of the performance of the optimal catalyst for a given reaction is inherently limited by the Sabatier principle.. In this work, microkinetic analysis has been carried out to examine the adsorption and catalytic behaviors of single-atom-doped Ga2O3 catalysts in propane dehydrogenation (PDH), which shows that the volcano-shaped activity plot can be broken through by Lewis acid−base interactions, making it possible to achieve better catalytic performance than that of the most active catalyst lying near the summit of the volcano. In Situ:Article Title: Rational Design of Single-Atom-Doped Ga2O3 Catalysts for Propane Dehydrogenation: Breaking through Volcano Plot by Lewis Acid–Base Interactions Article Snippet: Volcano curves have proven to be particularly useful in new catalyst design in the field of heterogeneous catalysis.. On the other hand, the further enhancement of the performance of the optimal catalyst for a given reaction is inherently limited by the Sabatier principle.. In this work, microkinetic analysis has been carried out to examine the adsorption and catalytic behaviors of single-atom-doped Ga2O3 catalysts in propane dehydrogenation (PDH), which shows that the volcano-shaped activity plot can be broken through by Lewis acid−base interactions, making it possible to achieve better catalytic performance than that of the most active catalyst lying near the summit of the volcano. |
