Bo-Yan Xi

ORCID: 0000-0003-4528-2331
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About
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Research Areas
  • Mathematical Inequalities and Applications
  • Functional Equations Stability Results
  • Mathematical functions and polynomials
  • Analytic and geometric function theory
  • Mathematics and Applications
  • Matrix Theory and Algorithms
  • Multi-Criteria Decision Making
  • Approximation Theory and Sequence Spaces
  • Graph theory and applications
  • Electrocatalysts for Energy Conversion
  • Advanced battery technologies research
  • Hybrid Renewable Energy Systems
  • Fuel Cells and Related Materials
  • Advanced Mathematical Theories
  • Optimization and Variational Analysis
  • Statistical Mechanics and Entropy
  • Advanced Statistical Methods and Models
  • Bayesian Methods and Mixture Models
  • Electrochemical Analysis and Applications
  • Holomorphic and Operator Theory
  • Target Tracking and Data Fusion in Sensor Networks
  • Catalytic Processes in Materials Science
  • Point processes and geometric inequalities
  • Nonlinear Partial Differential Equations

Hangzhou Normal University
2025

Minzu University of China
2024

Inner Mongolia University for Nationalities
2011-2021

Henan Polytechnic University
2021

National University of Mongolia
2010-2020

Beijing Normal University
1997-1999

The authors establish some new inequalities for differentiable convex functions, which are similar to the celebrated Hermite-Hadamard's integral inequality and apply these construct special means of two positive numbers.

10.1155/2012/980438 article EN cc-by Journal of Function Spaces and Applications 2012-01-01

In the paper, authors introduce concepts of m- and (α, m)-logarithmically convex functions establish some Hermite-Hadamard type inequalities these classes functions.

10.2298/fil1301001b article EN Filomat 2013-01-01

In the paper, authors introduce a new concept "extended $s$-convex functions", establish some integral inequalities of Hermite-Hadamard type for this kind functions, and apply these to derive special means.

10.48550/arxiv.1406.5409 preprint EN other-oa arXiv (Cornell University) 2014-01-01

Hydrogen energy, a highly efficient and clean alternative to fossil fuels, is produced via electrochemical water splitting through the hydrogen evolution reaction (HER) oxygen (OER). However, OER's slow kinetics hinder efficiency. This article focuses on two technologies: proton exchange membrane (PEM) electrolysis alkaline electrolysis. PEM electrolysis, using precious metal catalysts, offers high efficiency but at cost. In contrast, employs cost-effective mature nickel-based catalysts....

10.54691/sw3j3m37 article EN cc-by-nc Frontiers in Sustainable Development 2025-02-23

With the growing global energy crisis and environmental pollution, developing sustainable technologies is urgent. Hydrogen, a clean source with high density water as its only byproduct, promising alternative to fossil fuels. Electrolytic splitting green hydrogen production method, but efficiency limited by slow kinetics of oxygen evolution reaction (OER). Developing efficient OER catalysts crucial improving this process. This article reviews principles electrolytic splitting, in-cluding HER...

10.54691/en359c02 article EN cc-by-nc Frontiers in Sustainable Development 2025-02-23

Manganese oxides have important research value and application potential in oxygen evolution reaction (OER). As the core of energy technologies such as electrolytic water metal-air batteries, kinetic process OER is slow overpotential high, efficient catalysts are needed to improve efficiency. oxide has become focus catalyst because its abundant reserves, low cost, environmental friendliness, controllable electronic structure structure. In recent years, researchers significantly improved...

10.54691/bg79t471 article EN cc-by-nc Frontiers in Sustainable Development 2025-03-22

10.1515/gmj-2013-0043 article EN Georgian Mathematical Journal 2013-01-01

In the paper, by setting up an integral identity and using Hölder inequality, authors establish some new inequalities of Hermite–Hadamard type for n -time differentiable m -convex functions discuss applications these to special means.

10.1524/anly.2012.1167 article EN Analysis 2012-08-01

In the paper, authors introduce a new concept of geometrically r -convex functions and establish some inequalities Hermite-Hadamard type for this class functions.

10.1556/sscmath.51.2014.4.1294 article EN Studia Scientiarum Mathematicarum Hungarica 2014-11-08

10.1007/s12044-014-0182-7 article EN Proceedings - Mathematical Sciences 2014-08-01

Abstract. In the paper, authors obtain some Hermite–Hadamard type integral inequalities for extended s -convex functions on co-ordinates in a rectangle.

10.1515/jaa-2014-0004 article EN Journal of Applied Analysis 2014-04-24

We introduce the notion of m-harmonic-arithmetically convex functions and establish some integral inequalities Hermite-Hadamard type for these functions.

10.2306/scienceasia1513-1874.2015.41.357 article EN ScienceAsia 2015-01-01

In the paper, some new inequalities of Hermite-Hadamard type for (α,m)-convex functions are obtained.

10.12816/0006138 article EN International Journal of Open Problems in Computer Science and Mathematics 2012-12-01

In the paper, several properties of geometric-arithmetically s-convex functions are provided, an integral identity in which integrands products a function and derivative is found, then some inequalities Hermite-Hadamard type for integrals whose geometric-arithmetic s-convexity established.

10.4134/ckms.2014.29.1.051 article EN Communications of the Korean Mathematical Society 2014-01-31

In the paper, authors establish some new Hermite-Hadamard type inequalities for Riemann-Liouville fractional integrals of functions whose derivatives in absolute value are (α,m) -convexity.

10.7153/fdc-04-02 article EN Fractional Differential Calculus 2014-01-01

10.1016/s0024-3795(97)00020-7 article EN publisher-specific-oa Linear Algebra and its Applications 1997-10-01

In the paper, authors introduce definitions of h-logarithmically convex functions and (h, m)-logarithmically respectively, discuss some properties these kinds functions, establish integral inequalities for functions.

10.37193/cmi.2014.01.12 article EN Creative Mathematics and Informatics 2014-01-01
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