2017
DOI: 10.1039/c7ay00140a
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Rapid determination of impurity of boron nitride in amorphous boron powder using inductively coupled plasma-atomic emission spectrometry (ICP-AES) and ion chromatography (IC)

Abstract: Ever-increasing use of amorphous boron powder (ABP) in high-energy materials (HEMs) and allied compositions has created frequent demand for the analysis of boron (B).

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Cited by 9 publications
(2 citation statements)
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“…Yield: 45.7 mg (75.2%, based on H 2 tzba). The existence of F atoms in 1 that originate from the hydrolysis of HBF 4 42,43 under solvothermal conditions, which was demonstrated by XPS spectra measurement (Figure S1). Crystallography.…”
Section: ■ Experimental Sectionmentioning
confidence: 89%
“…Yield: 45.7 mg (75.2%, based on H 2 tzba). The existence of F atoms in 1 that originate from the hydrolysis of HBF 4 42,43 under solvothermal conditions, which was demonstrated by XPS spectra measurement (Figure S1). Crystallography.…”
Section: ■ Experimental Sectionmentioning
confidence: 89%
“…Persistent endeavors have been devoted by several researchers to the design and development of innovative chemosensors with exceptional selectivity and unique sensitivity owing to their indispensable demand in modern society. 1 A distinct emphasis has been placed on developing organic chemosensors over other conventional techniques such as potentiometry, atomic absorption spectroscopy, 2 surface-enhanced Raman spectroscopy, 3 inductive coupled plasma atomic emission spectroscopy, 4 chemiluminescence, 5 voltammetry 6 and so on, which require sophisticated instrumentation, high-cost implementation, well-trained operators, bulk quantity of samples and time consumption. Nowadays fluorescent techniques are considered to be a significant tool and well-chosen over all the prevailing strategies on account of their rapid selective detection modes, facile synthetic tactics, operational simplicity and cost-effective methodology.…”
Section: Introductionmentioning
confidence: 99%